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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
261

Estudos estruturais de histatina-5 e seu análogo, TOAC0-histatina-5: interação com metais e sistemas biomiméticos / Structural studies of Histatin-5 and its analogue, TOAC0-Histatin-5: interaction with metals and biomimetic systems

Dyszy, Fábio Henrique 09 September 2008 (has links)
O mecanismo de ação da Histatina-5 (Hst-5), um peptídeo antimicrobiano da saliva humana com ação fungicida, não está esclarecido. Dicroísmo circular (CD), fluorescência e ressonância paramagnética eletrônica (RPE) foram empregados para examinar as propriedades conformacionais de Hst-5 e seu análogo contendo o aminoácido paramagnético TOAC N-terminal (TOAC0-Hst-5) em solução aquosa, em função do pH, de TFE, e de íons metálicos, e em presença de membranas modelo de composição. Foi examinada a atividade dos dois peptídeos em membranas lipídicas planas, na permeabilização de membranas modelo e frente o fungo Candida albicans e eritrócitos humanos, com o objetivo de estabelecer correlações entre a atividade e a estrutura dos peptídeos. Estudos de fluorescência mostraram a capacidade de TOAC de suprimir a fluorescência e que o pK dos resíduos de Tyr foram deslocados. Espectros de CD mostraram pequenas flutuações conformacionais, mas foram mantidas estruturas ao acaso. Espectros de RPE de TOAC0-Hst-5 mostraram a coexistência de duas populações, protonada e desprotonada, em troca lenta. A partir de medidas de desdobramento hiperfino (aN), foram calculados pKs de TOAC; a relação de altura dos picos de campo central e alto também foi sensível à titulação do peptídeo. Em TFE os peptídeos adotaram conformação α-helicoidal (CD). Espectros de fluorescência de Hst-5 mostraram aumento da fluorescência, e os de TOAC0-Hst-5 mostraram supressão, indicando aproximação de TOAC dos resíduos de Tyr. Espectros de RPE de TOAC0-Hst-5 também refletiram as mudanças conformacionais. Estudos de fluorescência mostraram a interação de Hst-5 e TOAC0-Hst-5 com Cu2+, Mn2+ e Zn2+, permitindo o cálculo de constantes de ligação. Espectros de CD refletiram pequenas variações conformacionais, sem aquisição de estrutura secundária. Espectros de RPE de TOAC0-Hst-5 na presença dos íons paramagnéticos Cu2+ e Mn2+ indicaram interações spin-spin, permitindo o cálculo das distâncias metal-nitróxido. Curvas de tempo de correlação rotacional em função da concentração dos íons permitiram calcular constantes de ligação da mesma ordem de grandeza daquelas obtidas por fluorescência. Hst-5 e TOAC0-Hst-5 ligaram-se em maior extensão a micelas negativas do que a zwitteriônicas num processo pH-dependente. Estudos de supressão de fluorescência por acrilamida confirmaram esses resultados, indicando a modulação por interações eletrostáticas. Espectros de CD mostraram que os peptídeos adotam conformação em dobra β tipo I. Estudos de RPE da interação de TOAC0-Hst-5 com vesículas de composição lipídica mimetizando membranas de E. coli e C. albicans (carga líquida negativa) e eritrócitos (carga líquida zero) confirmaram essa modulaçao. Na presença das membranas negativamente carregadas os espectros apresentaram extremos externos e internos, indicando que o eixo z do nitróxido orienta-se paralelamente à normal à bicamada. Estudos funcionais utilizando bicamadas lipídicas planas mostraram que TOAC0-Hst-5, mas não Hst-5, forma poros. Também, TOAC0-Hst-5, mas não Hst-5, permeabiliza vesículas carregadas negativamente. Ainda, a atividade fungicida de TOAC0-Hst-5 foi maior do que a de Hst-5 na ausência de íons, porém foi a mesma na presença de Mn2+ e Zn2+. Finalmente, TOAC0-Hst-5 mostrou maior atividade hemolítica que Hst-5. Esses resultados sugerem uma possível diferença nos mecanismos de ação de Hst-5 e seu análogo marcado, apesar da semelhança no comportamento conformacional dos peptídeos. / The mechanism of action of histatin-5 (Hst-5), an antifungal antimicrobial peptide from human saliva is not completely clarified. Circular dichroism (CD), fluorescence, and electron paramagnetic resonance (EPR) were used to examine the conformational behavior of Hst-5 and its analogue containing the paramagnetic amino acid TOAC at the N-terminus (TOAC0-Hst-5). Conformational properties were investigated in aqueous solution, as a function of pH, TFE, and addition of metal ions, and in the presence of model membranes of variable lipid composition. The activity of both peptides was examined in planar lipid membranes and with regard to permeabilization of model membranes. Activity was also tested towards the fungus Candida albicans and human erythrocytes, with the scope of establishing structure-function correlations. Fluorescence studies showed that TOAC0-Hst-5 is able to quench the peptide fluorescence and that the pK of the Tyr residues was shifted to lower values. CD spectra indicated that small conformational fluctuations occurred with increasing pH, but the overall unordered structure of the peptides was kept. EPR spectra of TOAC0-Hst-5 showed the coexistence of two populations, one protonated and one unprotonated, in slow exchange. The pK of TOAC was calculated from measurements of the isotropic hyperfine splitting (aN); the ratios of heights of the mid-field line and the high-field line were also sensitive to the peptide titration. In TFE, the peptides acquired -helical conformation (CD). Fluorescence spectra of Hst-5 showed an increase of fluorescence, while those of TOAC0-Hst-5 revealed quenching, indicating that, on the average, the TOAC residue becomes closer to the Tyr residues as a consequence of the peptide acquiring α-helical conformation. EPR spectra also reflected the conformational changes undergone by the peptide. Fluorescence studies indicated that Hst-5 and its spin labeled analogue interacted with Cu2+, Zn2+, and Mn2+ ions, allowing the calculation of binding constants. CD spectra reflected the occurrence of small conformational fluctuations, without acquisition of stable secondary structure. EPR spectra of TOAC0-Hst-5 in the presence of the paramagnetic ions Cu2+ and Mn2+ evinced the occurrence of spin-spin interactions, allowing the calculation of metal-nitroxide distances. Curves of rotational correlation times as a function of ion concentration yielded values for the binding constants of the same order of magnitude as those calculated from fluorescence measurements. Hst-5 and TOAC0-Hst-5 bound to a larger extent to negatively charged than to zwitterionic micelles, in a pH-dependent process. Studies of fluorescence quenching by water soluble acrylamide confirmed these results, pointing to the fact that binding is largely modulated by electrostatic interactions. CD spectra indicated that, upon binding to micelles, the peptides acquire a type I β-turn conformation. EPR studies of the interaction between TOAC0-Hst-5 and lipid vesicles whose composition mimicked those of E. coli and C. albicans (both with net negative surface charge) and erythrocytes (net zero surface charge) confirmed this modulation. In the presence of negatively charged membranes, the spectra presented outer and inner extrema, indicating that the nitroxide z axis is oriented parallel to the bilayer normal. Functional studies with planar lipid bilayers showed that TOAC0-Hst-5, but not the native peptide, forms pores. Also, TOAC0-Hst-5, but not Hst-5, permeabilizes negatively charged vesicles. Moreover, the fungicidal activity of TOAC0-Hst-5 was greater than that of Hst-5 in the absence of metal ions. However, in contrast with the native peptide, whose activity increased in the presence of Zn2+ and Mn2+, that of the analogue was the same in the absence and presence of the ions. Finally, TOAC0-Hst-5 had a more pronounced hemolytic activity than Hst-5. These results suggest a possible difference in the mechanisms of action of Hst-5 and its spin labeled analogue, in spite of the similarity of their conformational behavior.
262

Σύνθεση, δομικός χαρακτηρισμός, φασματοσκοπικές και μαγνητικές μελέτες πολυπυρηνικών ομομεταλλικών 3d και ετερομεταλλικών 3d-4f συμπλόκων / Synthesis, structural characterization, spectroscopic and magnetic studies of polynuclear 3d homometallic and 3d-4f heterometallic complexes

Γεωργοπούλου, Αναστασία 15 February 2012 (has links)
Με σκοπό τη μελέτη της χημείας ένταξης του υποκαταστάτη δι-2,6-(2-πυριδυλοκαρβονυλο) πυριδίνη (dpcp) με μέταλλα μετάπτωσης 3d, παρασκευάστηκαν οι τετραπυρηνικές πλειάδες [Cu4(N3)2{pyCO(OMe)pyCO(OMe)py}2(MeOH)2](ClO4)∙2MeOH (1∙2MeOH) και [Co4(N3)2(NO3)2{pyCO(OMe)pyCO(OMe)py}2]∙0.5MeOH (2∙0.5MeOH), η εξαπυρηνική πλειάδα [Ni6(CO3)(N3)6{pyCOpyC(O)(OMe)py}3(MeOH)2(H2O)][Ni6(CO3)(N3)6 {pyCOpyC(O)(OMe)py}3(MeOH)3](ClO4)2 (3∙1.8MeOH) και η διπυρηνική πλειάδα [Fe2{pyCO(OMe)py(Η)CO(OMe)py}2(MeO)2](ClO4)2∙(4∙MeOH). Στην συνέχεια μελετήθηκε η χημεία ένταξης του ίδιου υποκαταστάτη με μέταλλα 3d και 4f και παρασκευάστηκαν τα ετερομεταλλικά διπυρηνικά σύμπλοκα [ΜIILnIII{pyCOH(OEt)pyCOH(OEt)py}3](ClO4)2∙EtOH (5-16∙EtOH) με ΜΙΙ = CuΙΙ, CoΙΙ, NiΙΙ, ZnΙΙ, MnΙΙ, FeΙΙ [LnΙΙΙ = GdΙΙΙ (5 - 10), TbΙΙΙ (11 – 16) αντίστοιχα]. Όλα τα σύμπλοκα χαρακτηρίστηκαν κρυσταλλογραφικά, τα σύμπλοκα 4, 10 και 16 χαρακτηρίστηκαν με φασματοσκοπία Mössbauer ενώ τα σύμπλοκα 1 – 10 χαρακτηρίστηκαν μαγνητικά. Πιο συγκεκριμένα, οι μαγνητικές μελέτες των συμπλόκων 1 – 3, 5 και 10 έδειξαν σιδηρομαγνητικές αλληλεπιδράσεις ενώ εκείνες των συμπλόκων 4, 6, 7 και 9 έδειξαν αντισιδηρομαγνητικές αλληλεπιδράσεις. Προκειμένου να μελετηθεί σε βάθος η οικογένεια των βασικών καρβοξυλικών αλάτων του σιδήρου [Fe3O(O2CR)6(H2O)3]A, παρασκευάστηκαν δύο σειρές αυτών των συμπλόκων με R = CCl3, CHBr2, CH2F, CH2Cl, C(OH)Ph2, H, Ph, (CH2)3Cl, Me, CHMe2, Et και CMe3. Στην πρώτη σειρά συμπλόκων (17 - 28) το αντισταθμιστικό ιόν (Α) είναι ClO4-, ενώ στη δεύτερη (29 - 40) είναι NO3-. Η προσπάθεια απομόνωσης του ανάλογου με R = CF3 ήταν άκαρπη και για τα δύο αντισταθμιστικά ιόντα και οδήγησε σε ένα τετραπυρηνικό σύμπλοκο [Fe4O2(O2CCF3)8(H2O)6] (41) με δομή τύπου «πεταλούδας». Πραγματοποιήθηκαν μετρήσεις Mössbauer σε στερεά δείγματα και για τις δύο σειρές και οι ισομερείς μετατοπίσεις και οι τετραπολικές αλληλεπιδράσεις διαφέρουν μεταξύ 0.51 – 0.54 mms-1 και 0.36 – 0.76 mms-1 αντίστοιχα. Μετρήσεις Mössbauer και σε διαλύματα αυτών έδειξαν τη σταθερότητά τους και σε διάλυμα, με εξαίρεση το σύμπλοκο 29 (R = Cl3C, Α = NO3-) που οδήγησε σε σύμπλοκο τύπου «πεταλούδας». Το υψηλής συμμετρίας σύμπλοκο [Fe3O(O2CPh)6(py)3](ClO4)∙py (42) έχει μελετηθεί στο παρελθόν κρυσταλλογραφικά αλλά και με μετρήσεις ανελαστικής σκέδασης νετρονίων IINS και είχε προταθεί ύπαρξη του μαγνητικού φαινομένου Jahn-Teller σε πολύ χαμηλές θερμοκρασίες. Θέλοντας να εξακριβωθεί εάν η μαγνητική συμμετρία σχετίζεται με την πραγματική, πραγματοποιήθηκαν κρυσταλλογραφικές μετρήσεις μεταβλητής θερμοκρασίας στο εργαστήριο ΒΜ01Α του ESRF. Τα αποτελέσματα των πειραματικών μετρήσεων έδειξαν ότι η πραγματική συμμετρία παραμένει ίδια. Στη συνέχεια από μετρήσεις μαγνητικής επιδεκτικότητας ac, παρατηρήθηκε η ύπαρξη μαγνητικών φαινομένων χαλάρωσης υπό την επίδραση ασθενών μαγνητικών πεδίων. / Seeking to study the coordination chemistry of the ligand di-2, 6-(2-pyridylcarbonyl) pyridine (dpcp) with 3d transition metal ions, the tetranuclear complexes [Cu4(N3)2{pyCO(OMe)pyCO(OMe)py}2(MeOH)2](ClO4)∙2MeOH (1∙2MeOH) and [Co4(N3)2(NO3)2{pyCO(OMe)pyCO(OMe)py}2]∙0.5MeOH (2∙0.5MeOH), the hexanuclear complex [Ni6(CO3)(N3)6{pyCOpyC(O)(OMe)py}3(MeOH)2(H2O)][Ni6(CO3)(N3)6{pyCOpyC(O) (OMe)py}3(MeOH)3](ClO4)2 (3∙1.8MeOH) and the dinuclear complex [Fe2{pyCO(OMe)py(Η)CO(OMe)py}2(MeO)2](ClO4)2∙(4∙MeOH) were synthesized. In addition, in order to study the coordination chemistry of the same ligand with mixed 3d transition metal ions and 4f lanthanide ions, the heterometallic dinuclear complexes [ΜIILnIII{pyCOH(OEt)pyCOH(OEt)py}3] (ClO4)2∙EtOH (5-16∙EtOH) were synthesized, with ΜΙΙ = CuΙΙ, CoΙΙ, NiΙΙ, ZnΙΙ, MnΙΙ, FeΙΙ [LnΙΙΙ = GdΙΙΙ (5 - 10), TbΙΙΙ (11 – 16) respectively]. All complexes were structurally characterized and complexes 4, 10 and 16 were characterized by Mössbauer spectroscopy. Magnetic properties measurements of complexes 1-3, 5 and 10 indicated the existence of ferromagnetic interactions, while those of 4, 6, 7 and 9 indicated the existence of antiferromagnetic interactions. For the in depth study of the family of basic iron (III) carboxylates [Fe3O(O2CR)6(H2O)3]A, two series of complexes were prepared with R = Cl3C, CHBr2, CH2F, CH2Cl, C(OH)Ph2, H, Ph, Cl(CH2)3, Me, CHMe2, Et and Me3C. For the former series (17 - 28) the counteranion (A-) is ClO4- and for the latter (29 - 40) is NO3-. Attempts to prepare the respective trifluoroacetate (R = CF3) complexes were unsuccessful and the reaction system lead to the tetranuclear “butterfly” complex [Fe4O2(O2CCF3)8(H2O)6] (41), irrespective of whether perchlorates or nitrates were used as counteranions. Mössbauer studies revealed very similar isomer shifts for all complexes in the region of 0.51 – 0.54 mms-1, and variable quadrupole splittings, ranging from 0.36 to 0.76 mms-1. Mössbauer studies of the complexes were carried out in frozen MeCN solutions in order to assess their stability in solution and they proved to be stable in MeCN solutions, except complex 29 (R = Cl3C, Α = NO3-), which dissociated to a butterfly-type complex. The high-symmetry cluster [Fe3O(O2CPh)6(py)3](ClO4)∙py (42) has been structurally characterized and its Inelastic Incoherent Neutron Scattering studies have been reported. These studies suggested the existence of a magnetic Jahn-Teller effect at lower temperatures. Seeking to study if there is any correlation between magnetic and structural symmetry, we undertook variable-temperature crystallographic studies on ESRF BM01A beamline. With the results of these data we concluded that the symmetry of the crystal remained. Moreover, we have discovered that this complex exhibits magnetic relaxation phenomena under weak magnetic fields, observed by ac magnetic susceptometry.
263

Synthesis, Structure and Catalytic Properties of Pd2+, Pt2+ and Pt4+ Ion Substituted TiO2

Mukri, Bhaskar Devu January 2013 (has links) (PDF)
After introducing fundamentals of catalysis with noble metal surfaces especially Pt metal for CO oxidation and subsequent developments on nano-crystalline Pt metals supported on oxide supports, an idea of Pt ion in reducible oxide supports acting as adsorption sites is proposed in chapter 1. Idea of red-ox cycling of an ion in an oxide matrix is presented taking Cu ion in YBa2Cu3O7 as an example. Noble metal ions in reducible oxides such as CeO2 or TiO2 acting as adsorption sites and hence a red-ox catalyst was arrived at from chemical considerations. Among several reducible oxide supports, TiO2 was chosen from crystal structure and electronic structure considerations. A good redox catalyst for auto exhaust and related applications should have high oxygen storage capacity (OSC). Any new material that can work as a redox catalyst should be tested for its OSC. Therefore we designed and fabricated a temperature programmed reduction by hydrogen (H2¬TPR) system to measure OSC. This is presented in chapter 2. We have synthesized a number of oxides by solution combustion method. Structures were determined by powder XRD and Rietveld refinement methods. Fe2O3, Fe2-xPdxO3-δ, Cu1-xMnAl1+xO4, LaCoO3, LaCo1-xPdxO3-δ, CeO2, Ce1¬xPdxO2-δ, TiO2, Ti1-xPdxO2-δ and many other oxide systems were synthesized and their structures were determined. OSC of these systems were determined employing the H2/TPR system. TPR studies were carried out for several redox cycles in each case. Except Pd ion substituted CeO2 and TiO2 other oxide systems decomposed during redox cycling. Pd ion substituted TiO2 gave highest OSC and also it was stable paving way to choose this system for further study. In chapter 3, we have described lattice oxygen of TiO2 activation by the substitution of Pd ion in its lattice. Ti1-xPdxO2-x (x = 0.01 to 0.03) have been synthesized by solution combustion method crystallizing in anatase TiO2 structure. Pd is in +2 oxidation state and Ti is in +4 oxidation state in the catalyst as seen by XPS. Pd is more ionic in TiO2 lattice compared to Pd in PdO. Oxygen storage capacity defined by ‘amount of oxygen that is used reversibly to oxidize CO’ is as high as 5100 μmol/g of Ti0.97Pd0.03O1.97. Oxygen is extracted by CO to CO2 in absence of feed oxygen even at room temperature. Rate of CO oxidation is 2.75 μmol.g-1.s-1 at 60 0C over Ti0.97Pd0.03O1.97 and C2H2 gets oxidized to CO2 and H2O at room temperature. Catalyst is not poisoned on long time operation of the reactor. Such high catalytic activity is due to activated lattice oxygen created by the substitution of Pd ion as seen from first-principles density functional theory (DFT) calculations with 96 atom supercells of Ti32O64, Ti31Pd1O63, Ti30Pd2O62 and Ti29Pd3O61. The compounds crystallize in anatase TiO2 structure with Pd2+ ion in nearly square planar geometry and TiO6 octahedra are distorted by the creation of weakly bound oxygens. Structural analysis of Ti31Pd1O63 which is close to 3% Pd ion substituted TiO2 shows that bond valence of oxygens associated with both Ti and Pd ions in the lattice is 1.87. A low bond valence of oxygen is characteristic of weak oxygen in the lattice compared to oxygens with bond valence 2 and above in the same lattice. Thus, the exact positions of activated oxygens have been identified in the lattice from DFT calculations. Pt has two stable valencies: +2 and +4. Ti ion in TiO2 is in +4 state. Is it possible to substitute Pt exclusively in +2 or +4 state in TiO2? Implications are that Pt in +2 will have oxide ion vacancies and Pt in +4 states will not have oxide ion vacancies. Indeed we could synthesize Pt ion substituted TiO2 with Pt in +2 and +4 states by solution combustion method. In chapter 4, we have shown the positive role of an oxide ion vacancy in the catalytic reaction. Ti0.97Pt2+0.03O1.97 and Ti0.97Pt4+0.03O2 have been synthesized by solution combustion method using alanine and glycine as the fuels respectively. Both are crystallizing in anatase TiO2 structure with 15 nm average crystallite size. X-ray photoelectron spectroscopy (XPS) confirmed Pt ions are only +2 state in Ti0.97Pt0.03O1.97 (alanine) and only in +4 state in Ti0.97Pt0.03O2 (glycine). CO oxidation rate with Ti0.97Pt2+0.03O1.97 is over 10 times higher compared to Ti0.97Pt4+0.03O2. The large shift in 100 % hydrocarbon oxidation to lower temperature was observed by Pt2+ ion substituted TiO2 from that by Pt4+ ion substituted TiO2. After reoxidation of the reduced compound by H2 as well as CO, Pt ions are stabilized in mixed valences, +2 and +4 states. The role of oxide ion vacancy in enhancing catalytic activity has been demonstrated by carrying out the CO oxidation and H2 + O2 recombination reaction in presence and in absence of O2. There is no deactivation of the catalyst by long time CO to CO2 catalytic reaction. We analyzed the activated lattice oxygens upon substitution of Pt2+ ion and Pt4+ ion in TiO2, using first-principles density functional theory (DFT) calculations with supercells Ti31Pt1O63, Ti30Pt2O62, Ti29Pt3O61 for Pt2+ ion substitution in TiO2 and Ti31Pt1O64, Ti30Pt2O62, Ti29Pt3O61 for Pt4+ ion substitution in TiO2. We find that the local structure of Pt2+ ion has a distorted square planar geometry and that of Pt4+ ion has an octahedral geometry similar to Ti4+ ion in pure TiO2. The change in coordination of Pt2+ ion gives rise to weakly bonded oxygens and these oxygens are responsible in high rates of catalytic reaction. Thus, the high catalytic activity results from synergistic roles of oxide ion vacancy and weakly bonded lattice oxygen. In chapter 5, we have shown high rates of H2 + O2 recombination reaction by Ti0.97Pd0.03O1.97 catalyst coated on honeycomb monolith made up of cordierite material. This catalyst was coated on γ¬Al2O3 coated monolith by solution combustion method using dip-dry-burn process. This is a modified conventional method to coat catalysts on honeycombs. Formation of Ti0.97Pd0.03O1.97 catalyst on monolith was confirmed by XRD. Form the XPS spectra of Pd(3d) core level in Ti1-xPdxO2-δ, Pd ion is the formed to be +2 state. Ti0.97Pd0.03O1.97 showed high rates of H2 + O2 recombination compared to 2 at % Pd(metal)/γ-Al2O3, Ce0.98Pd0.02O2-δ, Ce0.98Pt0.02O2-δ, Ce0.73Zr0.25Pd0.02O2-δ and Ti0.98Pd0.02O1.98. Activation energy of H2 + O2 recombination reaction over Ti0.97Pd0.03O1.97 is 7.8 kcal/mole. Rates of reaction over Ti0.97Pd0.03O1.97 are in the range of 10 – 20 μmol/g/s at 60 0C and 4174 h-1 space velocity. Rate is orders of magnitude higher compared to noble metal catalysts. From the industrial point of view, solvent-free hydrogenation of aromatic nitro compounds to amines at nearly 1 bar pressure is an important process. In chapter 6, we showed that Ti0.97Pd0.03O1.97 is a good –nitro to –amine conversion catalyst under solvent-free condition at 1.2 – 1.3 bar H2 pressure. Nitrobenzene, p-nitrotoluene and 2-chloro-4-nitrotoluene are taken for the catalytic reduction reaction. The amine products were analyzed by gas chromatography and mass spectrometry (GCMS). Further, confirmation of compounds was done by FTIR, 1H NMR and 13C NMR. In presence of alcohol as solvent, 100% conversion of aromatic nitro compounds to amines took place at higher temperature and it required more times. In n-butanol solvent, 100% conversion of nitrobenzene and p-nitrotoluene occurred within 10 h and 12 h at 105 °C respectively. We have compared solvent-free reduction of p-nitrotoluene over different catalysts at 90 °C. Catalytic activity for reduction of p¬nitrotoluene over Ti0.97Pd0.03O1.97 is much higher than that reaction over 3 atom % Pd on TiO2 and Pd metal. Turnover frequencies (TOF) for nitrobenzene and 2-chloro-4-nitrotoluene conversion are 217 and 20 over Ti0.97Pd0.03O1.97 respectively. With increase of temperature, TOF of aromatic nitro compound reduction is also increased. We have compared the solvent-free reduction of aromatic nitro compound over Ti0.97Pd0.03O1.97 with others in the literature. Upto 3 cycles of reduction reaction, there was no degradation of Ti0.97Pd0.03O1.97 catalyst and stability of catalyst structure was analyzed by XRD, XPS and TEM images. Catalyst is stable under reaction condition and the structure is retained with Pd in +2 state. Finally, we have proposed the mechanism of -nitro group reduction reaction based on the structure of Ti0.97Pd0.03O1.97. Instead of handling nano-crystalline materials we proceeded with coating our catalysts on cordierite honeycombs. In chapter 7, we have shown high catalytic activity towards Heck reaction over Ce0.98Pd0.02O2-δ and Ti0.97Pd0.03O1.97 coated on cordierite monolith. XRD patterns of Ce0.98Pd0.02O2¬δ coated on cordierite monolith were indexed to fluorite structure. Heck reaction of aryl halide with olefins over Ce0.98Pd0.02O2-δ and Ti0.97Pd0.03O1.97 coated on cordierite monolith were carried out at 120 °C. The products were first analyzed by GCMS and for the confirmation of compounds, we have recorded 1H NMR and 13C NMR. Heck reaction was carried out with different solvents and different bases for choosing the good base and a solvent. Hence, we have chosen K2CO3 as base and N,N¬dimethylformamide (DMF) as solvent. We have compared the rates of Heck reactions over these two catalysts and Ti0.97Pd0.03O1.97 catalyst showed much higher catalytic activity than Ce0.98Pd0.02O2-δ. With increase of temperature from 65 °C to 120 °C, the catalytic activity of Ti0.97Pd0.03O1.97 on Heck reaction is also increased. The catalyst was reused for next Heck reaction without significant loss of activity. A mechanism for Heck reaction of aryl halide with alkyl acrylate has been proposed based on the structure of Ti0.97Pd0.03O1.97. In chapter 8, we have provided a critical review of the work presented in the thesis. Critical issues such as noble metal ion doping in TiO2 vs noble metal ion substitution, difficulty of proving the substitution of low % noble metal ion in TiO2, need for better experimental methods to study noble metal ion in oxide matrix have been discussed. Finally, conclusions of the thesis are presented.
264

Etude et mise au point d'une cellule à électrodes poreuses pour la récupération d'ions métalliques en solution / Study of an electrochemical cell with porous electrodes for an environmental application

Vande Vyver, Olivier 03 March 2008 (has links)
Les procédés électrochimiques présentent beaucoup d’avantages dans le domaine du traitement et de la récupération de matière d’effluents industriels. Cependant, dans le cas de solutions diluées en ions métalliques, les électrodes classiques sont fortement limitées par leur efficacité ainsi que par leur taille. Dès lors, les électrodes poreuses, de par leur surface spécifique importante et de par leur structure particulière qui améliore le transport de matière et donc l’efficacité de l’électrode, représentent une alternative très intéressante aux électrodes classiques.<p><p>Parmi les électrodes poreuses, celles constituées de fibres métalliques semblent les plus prometteuses. L’objectif de ce travail est de donner les relations utiles pour dimensionner une cellule contenant ce type d’électrodes en vue du traitement d’effluents industriels contenant des ions métalliques. <p>Les électrodes étudiées ont été caractérisées par différentes techniques :microscopie électronique, méthode électrochimique, mesure de la perte de charge, conductimétrie, porosimétrie,… Cette caractérisation a permis de connaître la porosité, les surfaces spécifiques (géométrique, dynamique et électrochimique) et la tortuosité des électrodes. <p>Ensuite, le coefficient de transport de matière moyen a été étudié par une nouvelle méthode basée sur la mesure d’un rendement électrochimique. Cette méthode présente l’avantage de pouvoir travailler avec des vitesses de circulation de l’électrolyte compatibles avec celles utilisées industriellement. Pour cela, une cellule d’électrolyse à circulation forcée a été mise au point. <p><p>Afin de comprendre comment la géométrie d’une électrode poreuse de ce type influence le transport de matière local et la densité de courant et donc l’efficacité de l’électrode, le transport de matière et la densité de courant locale ont été modélisés autour d’un cylindre (représentatif d’une fibre) et validés par des mesures expérimentales. La modélisation s’est ensuite étendue à un réseau de fibres cylindriques représentatif des électrodes poreuses étudiées. Cette modélisation a permis d’obtenir une relation générale liant les nombres de Sherwood, de Reynolds et de Schmidt à des nombres sans dimension caractérisant la géométrie du réseau de fibres. Cette relation donne des résultats concordants avec ceux obtenus expérimentalement pour les électrodes poreuses étudiées.<p><p>Le volume utile d’une électrode poreuse dépend fortement des conditions expérimentales (concentration de l’électrolyte, vitesse de circulation, intensité du courant appliquée,…) et de la structure de l’électrode (porosité, surface spécifique,…). Ces paramètres influencent la distribution du potentiel et de la densité de courant dans l’électrode. Différents modèles de distribution sont comparés et appliqués aux électrodes poreuses étudiées. Cette distribution de courant influence le colmatage progressif de l’électrode poreuse en cours d’électrolyse. Il s’avère que l’électrode en contrôle diffusionnel (avec un rendement électrochimique faible) optimise la distribution du courant dans l’électrode et, de ce fait, ralenti son colmatage. De plus, travailler avec une solution diluée et une vitesse de circulation de l’électrolyte importante améliore la distribution du courant. Il en est de même si l’électrode poreuse présente une grande porosité et une faible surface spécifique.<p><p>Ce travail aura donc permis de proposer des relations indispensables pour le dimensionnement d’une cellule à électrodes poreuses (constituées de fibres métalliques) ainsi que les conditions opératoires idéales dans le cas du traitement d’effluents industriels contenant des ions métalliques./<p>Electrochemical techniques offer many advantages for the prevention of pollution problems in the industrial processes. However, flat electrodes are not ideal to treat dilute solutions containing metallic ions. With their high specific surface and open structure, which enhance mass transfer, porous electrodes are a good alternative for the treatment this kind of effluent. Fibre materials are particularly well suited as material for the production of porous electrodes. <p><p>The aim of this thesis is to study an electrochemical cell with a porous electrode in order to treat dilute metallic ions solutions and to provide dimensionless equations suited to scale-up the electrode for industrial application. <p><p>The porous electrodes, used in this thesis, are made of a stainless steel fibre network. The main properties and characteristics of these electrodes are studied by means of several techniques :electron microscopy, electrochemical methods (voltammetry, limiting current density measurerment), conductivity measurement, porosimetry, pressure drop measurement,… The obtained parameters are :porosity, specific surfaces (geometric, dynamic and electrochemical), fibres' diameter, tortuosity and the geometric disposition of the fibres in the electrodes. Mass transfer inside the porous electrodes is studied experimentally by a new developed method, linked to the measurement of the faradic yield as a function of different electrolysis parameters. For these measurements, an experimental electrolysis cell with high electrolyte flow rate has been designed and builds.<p><p>To understand how the geometry of the porous electrode influences the local and mean mass transfer coefficients and current densities, numerical studies and simulations have been performed. <p>The first type of simulation deals with a single wire (representative of a fibre from the porous electrode). <p>The second type of simulation deals with the integration of individual fibres in a fibre network. A correlation between dimensionless numbers such as Sherwood's, Reynolds' and Schmidt's numbers together with numbers characteristic of the electrode’s geometry has been established for Reynolds’s numbers ranging from 0,02 to 1,4. A good agreement between simulation and experimental measurements of mass transfer is observed.<p><p>The real effective electrochemical volume of the porous electrode depends on experimental conditions (current, concentration, flow velocity…) and electrode’s geometry (porosity, specific surface,…). These parameters influence the potential and current distribution inside the porous electrode. Several models of current distribution are applied to these electrodes and the theoretical simulations are compared with experimental measures. <p>As a result of these simulations, an electrode under diffusion control with a small faradic yield appears to be the best choice in order to homogenise the current density inside the porous electrodes. Dilute solutions, high flow velocity and electrodes with high porosity improve also the current density penetration inside the electrode. These observations are confirmed by an electrode’s plugging study.<p><p>In conclusion, this thesis provides mathematical relationships to scale-up a cell with porous electrodes of metallic fibre, and provides guidelines to treat, in an efficient manner industrial effluents containing metallic ions.<p><p> / Doctorat en Sciences de l'ingénieur / info:eu-repo/semantics/nonPublished
265

Syntheses, Structures and Characterization of New Coordination Polymer Compounds

Sushrutha, S R January 2016 (has links) (PDF)
The present thesis provides a systematic investigation of coordination polymers of 3d, rare-earth (4f) and main group element (Bi) using both rigid aromatic, flexible aliphatic linkers. Luminescent sensing behavior towards nitro aromatics, metal ions and ferroelectric behavior have been investigated using some of the prepared compounds. The possible usefulness of lone pair on the structure has been investigated using bismuth based coordination polymers. The thermal and optical behavior of lanthanide coordination polymers (Ce, Pr and Nd) have also been studied. Chapter 1 An Overview of Coordination Polymer (CP) Compounds This chapter presents a brief introduction to coordination polymer (CP) compounds. Starting from the brief historical background on coordination compounds, this chapter shed light on some earlier developments in this family of compounds by Yaghi, Robson and others. The usefulness of carboxylate and imidazolates in construction of some important coordination polymer compounds like MOF-5, HKUST-1, ZIFs, MIL-53, UiO-66, CD-MOF-1 etc has been described in detail along with its properties. The coordination polymers exhibit many important properties and some of the properties like sorption, separation, ionic conductivity, catalysis and ferroelectricity have been discussed briefly and summerized. Chapter 1 also provides the general synthetic and characterization approaches that have been employed during the present studies. Chapter 2 Part A: Adenine Based Coordination Polymers with Cyclohexane dicarboxylic acids This chapter presents the synthesis, structure and properties of four new coordination polymers [Zn4(C8H10O4)2.5(C5H4N5)3.2H2O].7H2O.2DMA (I), [Cd3(C8H10O4)2(C5H4N5)2.H2O] (II), [Cd(C8H11O4)2(C5H5N5)2.2H2O] (III), [Cd(C8H10O4)(C7H8N5O).H2O]. 4H2O (IV), (CHDA = cyclohexane dicarboxylic acid, ad = adenine, DMA = dimethylacetamide, 9-HEA = 9-hydroxyethyl adenine). The compound I and II forms three-dimensional structure having distinct arrangements of 1,4-CHDA and adenine units with Zn and Cd metals respectively. The molecular complex unit is observed in compound III with 1,2-CHDA and adenine. Compound IV forms two-dimensional structure with 9-HEA and 1,2-CHDA. The observation of base-pairing interactions in the above compounds is noteworthy. In compounds I, II and IV amino groups are appears to be free and utilized for the detection of nitro aromatic explosives through fluorescence quenching. The results revealed that the emission behavior of the present compounds is greatly influenced by the hydroxyl nitroaromatic analyses like indophenol, dinitrophenyl and trinitrophenols with very low detection limits. The compound I also exhibits considerable sensitivity towards metal ion detection, especially Fe2+/Fe3+, Cr3+, Ag+ and Hg2+ ions in solution. The presence of free nitrogen sites in compound II has been explored for the base catalyzed Knoevenagel condensation reaction, the quantitative yields are observed with various aldehyde substrates. Part B: Adenine Based Coordination Polymer with Oxydiacetic acid: [Cd2(C4H4O5)2(C5H5N5)].H2O.DMA The synthesis, structure and properties of a Cd based coordination polymer with oxydiacetic acid and adenine, [Cd2(C4H4O5)2(C5H5N5)].H2O. DMA is described. The compound has a two-dimensional structure formed by the connectivity involving Cd and oxydiacetic acid. The adenine ligand binds with the Cd metal center through the pyrimidine nitrogen and hangs in the inter layer spaces. The layers are stacked in a ABAB.... fashion and the inter layer spaces occupied by the dimethyl amine and water molecules. The water molecules are very labile and its removal can be accomplished by heating the sample at 100°C, which is also confirmed by the single crystal XRD, PXRD and IR studies. The availability of free amino groups of adenine molecule has been utilized for the detection of nitroaromatics, especially nitrophenols with good sensitivity. The amino group was also found to be useful in catalyzing Knoevenagel condensation reactions. Chapter 3: Rare-Earth Metal Carboxylates: Ln2(µ3-OH)(C4H4O5)2(C4H2O4)].2H2O [Ln=Ce, Pr and Nd] This chapter describes synthesis, structure and properties of series of rare-earth based compounds, [Ln2(µ3-OH)(C4H4O5)2(C4H2O4)].2H2O (Ln = Ce, Pr and Nd). The malic acid and fumaric acid form part of the structure. The lanthanide centers are connected by the malate units to form a two dimensional layers, which are pillared by fumarate units forming the three-dimensional structure. Overall, structure can be described as I2O1 type inorganic in two-dimension (Ln-O-Ln layers) and organic in one dimension. The extra framework water molecules form a dimer and occupy the channels. The robustness of the framework was reflected in terms of facile removal and reinsertion of the water molecules, which is also confirmed by single crystal XRD, variable temperature IR and cyclic TGA study. The presence of water dimers and weakly interacting water chain suggested the possibility of proton migration in these compounds. Proton conductivity studies reveal the conductivity values of ~2.85 x 10-6 Ω-1cm-1 at 98% relative humidity. The optical studies revealed an up-conversion behavior involving more than one photon for the neodymium compound. Chapter 4: Bismuth Carboxylates with Brucite and Fluorite Related Structures The synthesis, structure and properties of three new bismuth based coordination polymers have been described in this chapter. The compounds [C4N2H10][Bi(C7H4NO4)(C7H3NO4)].H2O (I), [Bi(C5H3N2O4) (C5H2N2O4)] (II) and [Bi(µ2-OH)(C7H3NO4)] (III) were isolated employing hydrothermal condition with three different heterocyclicdicarboxylic acids, 3,6-pyridinedicarboxylic acid, 4,5-imidazoledicarboxylic acid and 3,4-pyridinedicarboxylic acid respectively. The structures of all the compounds have linkages between Bi2O2 and the corresponding dicarboxylate forming a simple molecular unit in I, a bilayer arrangement in II and a three-dimensional extended structure in III. The topological arrangement of the nodal building units in the structures resembles brucite related layers in II and fluorite related arrangement in compound III. By utilizing the secondary interactions, the structure of III can be correlated to a Kagome related net. The observation of such classical inorganic related structures in the bismuth carboxylates is noteworthy. Heterogeneous catalytic studies indicate Lewis acidic nature in the bismuth center in all three compounds. Chapter 5: Solvent dependent Delamination, Restacking and Ferroelectric studies in a Two-Dimensional Compound [NH4][Ag3(C9H5NO4S)2(C13H14N2)2].8H2O This chapter describes synthesis, structure, water dependent delamination/restacking and ferroelectric behavior in a layered coordination polymer compound, [NH4][Ag3(C9H5NO4S)2(C13H14N2)2].8H2O. The compound has a two-dimensional structure with the water molecules occupying the inter-lamellar spaces. The lattice water molecules can be fully removed and reinserted, which accompany the crystalline-amorphous-crystalline transformation. This transformation resembles the collapse/delamination and re-stacking of the layers. This transformation has also been investigated by in-situ IR and PXRD studies. The presence of a natural dipole (anionic framework and cationic ammonium ions) along with the non-centrosymmetric space group gives rise to a room-temperature ferroelectric behavior to the compound with saturation polarization (Ps) of 1.95 μC/cm2 and remnant polarization of 0.63 μC/cm2. The temperature dependent dielectric measurements indicate that the ferroelectric-paraelectric transformation occurs at 320 K. The ferroelectric-paraelectric transformation also follows the crystalline-amorphous-crystalline transitions.
266

Estudos estruturais de histatina-5 e seu análogo, TOAC0-histatina-5: interação com metais e sistemas biomiméticos / Structural studies of Histatin-5 and its analogue, TOAC0-Histatin-5: interaction with metals and biomimetic systems

Fábio Henrique Dyszy 09 September 2008 (has links)
O mecanismo de ação da Histatina-5 (Hst-5), um peptídeo antimicrobiano da saliva humana com ação fungicida, não está esclarecido. Dicroísmo circular (CD), fluorescência e ressonância paramagnética eletrônica (RPE) foram empregados para examinar as propriedades conformacionais de Hst-5 e seu análogo contendo o aminoácido paramagnético TOAC N-terminal (TOAC0-Hst-5) em solução aquosa, em função do pH, de TFE, e de íons metálicos, e em presença de membranas modelo de composição. Foi examinada a atividade dos dois peptídeos em membranas lipídicas planas, na permeabilização de membranas modelo e frente o fungo Candida albicans e eritrócitos humanos, com o objetivo de estabelecer correlações entre a atividade e a estrutura dos peptídeos. Estudos de fluorescência mostraram a capacidade de TOAC de suprimir a fluorescência e que o pK dos resíduos de Tyr foram deslocados. Espectros de CD mostraram pequenas flutuações conformacionais, mas foram mantidas estruturas ao acaso. Espectros de RPE de TOAC0-Hst-5 mostraram a coexistência de duas populações, protonada e desprotonada, em troca lenta. A partir de medidas de desdobramento hiperfino (aN), foram calculados pKs de TOAC; a relação de altura dos picos de campo central e alto também foi sensível à titulação do peptídeo. Em TFE os peptídeos adotaram conformação &#945;-helicoidal (CD). Espectros de fluorescência de Hst-5 mostraram aumento da fluorescência, e os de TOAC0-Hst-5 mostraram supressão, indicando aproximação de TOAC dos resíduos de Tyr. Espectros de RPE de TOAC0-Hst-5 também refletiram as mudanças conformacionais. Estudos de fluorescência mostraram a interação de Hst-5 e TOAC0-Hst-5 com Cu2+, Mn2+ e Zn2+, permitindo o cálculo de constantes de ligação. Espectros de CD refletiram pequenas variações conformacionais, sem aquisição de estrutura secundária. Espectros de RPE de TOAC0-Hst-5 na presença dos íons paramagnéticos Cu2+ e Mn2+ indicaram interações spin-spin, permitindo o cálculo das distâncias metal-nitróxido. Curvas de tempo de correlação rotacional em função da concentração dos íons permitiram calcular constantes de ligação da mesma ordem de grandeza daquelas obtidas por fluorescência. Hst-5 e TOAC0-Hst-5 ligaram-se em maior extensão a micelas negativas do que a zwitteriônicas num processo pH-dependente. Estudos de supressão de fluorescência por acrilamida confirmaram esses resultados, indicando a modulação por interações eletrostáticas. Espectros de CD mostraram que os peptídeos adotam conformação em dobra &#946; tipo I. Estudos de RPE da interação de TOAC0-Hst-5 com vesículas de composição lipídica mimetizando membranas de E. coli e C. albicans (carga líquida negativa) e eritrócitos (carga líquida zero) confirmaram essa modulaçao. Na presença das membranas negativamente carregadas os espectros apresentaram extremos externos e internos, indicando que o eixo z do nitróxido orienta-se paralelamente à normal à bicamada. Estudos funcionais utilizando bicamadas lipídicas planas mostraram que TOAC0-Hst-5, mas não Hst-5, forma poros. Também, TOAC0-Hst-5, mas não Hst-5, permeabiliza vesículas carregadas negativamente. Ainda, a atividade fungicida de TOAC0-Hst-5 foi maior do que a de Hst-5 na ausência de íons, porém foi a mesma na presença de Mn2+ e Zn2+. Finalmente, TOAC0-Hst-5 mostrou maior atividade hemolítica que Hst-5. Esses resultados sugerem uma possível diferença nos mecanismos de ação de Hst-5 e seu análogo marcado, apesar da semelhança no comportamento conformacional dos peptídeos. / The mechanism of action of histatin-5 (Hst-5), an antifungal antimicrobial peptide from human saliva is not completely clarified. Circular dichroism (CD), fluorescence, and electron paramagnetic resonance (EPR) were used to examine the conformational behavior of Hst-5 and its analogue containing the paramagnetic amino acid TOAC at the N-terminus (TOAC0-Hst-5). Conformational properties were investigated in aqueous solution, as a function of pH, TFE, and addition of metal ions, and in the presence of model membranes of variable lipid composition. The activity of both peptides was examined in planar lipid membranes and with regard to permeabilization of model membranes. Activity was also tested towards the fungus Candida albicans and human erythrocytes, with the scope of establishing structure-function correlations. Fluorescence studies showed that TOAC0-Hst-5 is able to quench the peptide fluorescence and that the pK of the Tyr residues was shifted to lower values. CD spectra indicated that small conformational fluctuations occurred with increasing pH, but the overall unordered structure of the peptides was kept. EPR spectra of TOAC0-Hst-5 showed the coexistence of two populations, one protonated and one unprotonated, in slow exchange. The pK of TOAC was calculated from measurements of the isotropic hyperfine splitting (aN); the ratios of heights of the mid-field line and the high-field line were also sensitive to the peptide titration. In TFE, the peptides acquired -helical conformation (CD). Fluorescence spectra of Hst-5 showed an increase of fluorescence, while those of TOAC0-Hst-5 revealed quenching, indicating that, on the average, the TOAC residue becomes closer to the Tyr residues as a consequence of the peptide acquiring &#945;-helical conformation. EPR spectra also reflected the conformational changes undergone by the peptide. Fluorescence studies indicated that Hst-5 and its spin labeled analogue interacted with Cu2+, Zn2+, and Mn2+ ions, allowing the calculation of binding constants. CD spectra reflected the occurrence of small conformational fluctuations, without acquisition of stable secondary structure. EPR spectra of TOAC0-Hst-5 in the presence of the paramagnetic ions Cu2+ and Mn2+ evinced the occurrence of spin-spin interactions, allowing the calculation of metal-nitroxide distances. Curves of rotational correlation times as a function of ion concentration yielded values for the binding constants of the same order of magnitude as those calculated from fluorescence measurements. Hst-5 and TOAC0-Hst-5 bound to a larger extent to negatively charged than to zwitterionic micelles, in a pH-dependent process. Studies of fluorescence quenching by water soluble acrylamide confirmed these results, pointing to the fact that binding is largely modulated by electrostatic interactions. CD spectra indicated that, upon binding to micelles, the peptides acquire a type I &#946;-turn conformation. EPR studies of the interaction between TOAC0-Hst-5 and lipid vesicles whose composition mimicked those of E. coli and C. albicans (both with net negative surface charge) and erythrocytes (net zero surface charge) confirmed this modulation. In the presence of negatively charged membranes, the spectra presented outer and inner extrema, indicating that the nitroxide z axis is oriented parallel to the bilayer normal. Functional studies with planar lipid bilayers showed that TOAC0-Hst-5, but not the native peptide, forms pores. Also, TOAC0-Hst-5, but not Hst-5, permeabilizes negatively charged vesicles. Moreover, the fungicidal activity of TOAC0-Hst-5 was greater than that of Hst-5 in the absence of metal ions. However, in contrast with the native peptide, whose activity increased in the presence of Zn2+ and Mn2+, that of the analogue was the same in the absence and presence of the ions. Finally, TOAC0-Hst-5 had a more pronounced hemolytic activity than Hst-5. These results suggest a possible difference in the mechanisms of action of Hst-5 and its spin labeled analogue, in spite of the similarity of their conformational behavior.
267

Entwicklung und Charakterisierung einer Elektron-Zyklotron-Resonanz-Ionenquelle mit integriertem Sputtermagnetron für die Erzeugung intensiver Strömeeinfach geladener Aluminiumionen: Entwicklung und Charakterisierung einer Elektron-Zyklotron-Resonanz-Ionenquelle mit integriertem Sputtermagnetron für die Erzeugung intensiver Ströme einfach geladener Aluminiumionen

Weichsel, Tim 12 July 2016 (has links)
Es wurde eine Elektron-Zyklotron-Resonanz-Ionenquelle mit einer Mikrowellenfrequenz von2,45 GHz für die Produktion intensiver Ströme einfach geladener Metallionen entwickelt. Deren Beladung mit Metalldampf erfolgt über ein integriertes zylindrisches Sputtermagnetron, welches speziell für diese Aufgabe entworfen wurde. Die entstandene MECRIS, engl. Magnetron Electron Cyclotron Resonance Ion Source, vereinigt die ECR-Ionenquellentechnologie mit der Magnetron-Sputtertechnologie auf bisher einzigartige Weise und verkörpert so ein neues Metallionen-Quellenkonzept. Unter Verwendung eines Al-Sputtertargets konnte die Funktionsfähigkeit der MECRIS an dem Beispiel der Al+-Ionenerzeugung erfolgreich demonstriert werden. Der extrahierbare Al+-Ionenstrom wurde über einen neuartigen, im Rahmen der Arbeit entwickelten, Hochstrom-Faraday-Cup gemessen. Auf Basis numerischer Berechnungen wurde das Gesamtmagnetfeld so ausgelegt, dass die Permanentmagnete des Magnetrons und die Spulen der ECR-Quelle eine Minimum-B-Struktur erzeugen, welche einen effektiven Elektroneneinschluss nach dem magnetischen Spiegelprinzip ermöglicht. Gleichzeitig wird durch eine geschlossene ECR-Fläche, mit der magnetischen Resonanzflussdichte von 87,5 mT, eine optimale Heizung der Plasmaelektronen realisiert. Die mithilfe einer Doppel-Langmuir-Sonde gemessene Elektronentemperatur steigt in Richtung Quellenmitte an und beträgt maximal 11 eV. Geheizte Elektronen erlauben die effiziente Stoßionisation der Al-Atome, welche mit einer Rate von über 1E18 Al-Atome/s eingespeist werden und eine höchstmögliche Dichte von 2E10 1/cm³ aufweisen. Die MECRIS erzeugt hauptsächlich einfach geladene Ionen des gesputterten Materials (Al+) und des Prozessgases (Ar+). Der Al+-Ionenextraktionsstrom ist über die Erhöhung der Prozessparameter Sputterleistung, Mikrowellenleistung, Spulenstrom und Extraktionsspannung um eine Größenordnung bis auf maximal 135 μA steigerbar, was einer Stromdichte von 270 μA/cm² über die Extraktionsfläche von rund 0,5 cm² entspricht. Dies steht im Einklang mit der Prozessparameterabhängigkeit der anhand der Sonde bestimmten Plasmadichte, welche einen größtmöglichen Wert von etwa 6E11 1/cm³ annimmt. Das Verhältnis von extrahiertem Al+- zu Ar+-Ionenstrom kann durch Optimierung der Prozessparameter von 0,3 auf maximal 2 angehoben werden. Sondenmessungen des entsprechenden Ionendichteverhältnisses bestätigen diesen Sachverhalt. Um möglichst große Extraktionsströme und Al+/Ar+-Verhältnisse zu generieren, muss die ECR-Fläche demnach in dem Bereich der höchsten Al-Atomdichte in der Targetebene lokalisiert sein. Gegenüber dem alleinigen Magnetronplasma (ohne Mikrowelleneinspeisung) können mit dem MECRIS-Plasma um bis zu 140 % höhere Al+-Ionenströme produziert werden. Aus Sondenuntersuchungen geht hervor, dass dies eine Folge der um etwa eine Größenordnung gesteigerten Plasmadichte und der um rund 7 eV größeren Elektronentemperatur des MECRIS-Plasmas ist. Das MECRIS-Plasma wurde außerdem mittels optischer Emissionsspektroskopie charakterisiert und durch ein globales sowie ein zweidimensionales Modell simuliert. Die gewonnenen Prozessparameterabhängigkeiten der Plasmadichte, Elektronentemperatur sowie Al+- und Ar+-Ionendichte stimmen mit den Sondenergebnissen überein. Teilweise treten jedoch Absolutwertunterschiede von bis zu zwei Größenordnungen auf. Die Erhöhung der Sputterleistung und Extraktionsspannung über die derzeitigen Grenzen von 10 kW bzw. 30 kV sowie die Optimierung der Extraktionseinheit hinsichtlich minimaler Elektrodenblindströme bietet das Potential, den Al+-Ionenstrom bis in den mA-Bereich zu steigern. / An electron cyclotron resonance ion source working at a microwave frequency of 2.45 GHz has been developed in order to generate an intense current of singly charged metal ions. It is loaded with metal vapor by an integrated cylindrical sputter magnetron, which was especially designed for this purpose. The MECRIS (Magnetron Electron Cyclotron Resonance Ion Source) merges ECR ion source technology with sputter magnetron technology in a unique manner representing a new metal ion source concept. By using an Al sputter target, the efficiency of the MECRIS was demonstrated successfully for the example of Al+ ion production. The extractable ion current was measured by a newly developed high-current Faraday cup. On the basis of numerical modeling, the total magnetic field was set in a way that the permanent magnets of the magnetron and the coils of the ECR source are forming a minimum-B-structure, providing an effective electron trap by the magnetic mirror principle. Simultaneously, optimal electron heating is achieved by a closed ECR-surface at resonant magnetic flux density of 87.5 mT. Electron temperature increases towards the center of the source to a maximum of about 11 eV and was measured by a double Langmuir probe. Due to the heated electron population, efficient electron impact ionization of the Al atoms is accomplished. Al atoms are injected with a rate of more than 1E18 Al-atoms/s resulting in a maximum Al atom density of 2E10 1/cm³. The MECRIS produces mainly singly charged ions of the sputtered material (Al+) and the process gas (Ar+). The Al+ ion extraction current is elevated by one order of magnitude to a maximum of 135 μA by increasing the process parameters sputter magnetron power, microwave power, coil current, and acceleration voltage. Related to the extraction area of about 0.5 cm², the highest possible Al+ ion current density is 270 μA/cm². A corresponding process parameter dependency was found for the plasma density showing a peak value of about 6E11 1/cm³, which was deduced from probe measurements. The ratio of the extracted Al+ ion current to the Ar+ ion current can be enhanced from 0.3 to a maximum of 2 by optimization of the process parameters. This was confirmed by probe investigations of the appropriate ion density ratio. In conclusion, the ECR-surface needs to be located in the area of the highest Al atom density in the target plane in order to improve the extraction current and Al+/Ar+ ratio. The MECRIS plasma produces an Al+ ion current, which is up to 140 % higher compared to that of the sole sputter magnetron plasma (without microwave injection). As revealed by probe measurements, this effect is due to the higher plasma density and electron temperature of the MECRIS plasma, leading to a difference of one order of magnitude and 7 eV, respectively. Additionally, the MECRIS plasma has been characterized by optical emission spectroscopy and simulated by a global and a two-dimensional model. Retrieved process parameter dependencies of plasma density, electron temperature, Al+ ion density, and Ar+ ion density coincide with probe findings. Although a discrepancy of the absolute values of partly up to two orders of magnitude is evident. Potentially, the Al+ ion current can be enhanced to the mA-region by optimizing the ion extraction system for minimal idle electrode currents and by rising sputter magnetron power as well as acceleration voltage above the actual limits of 10 kW and 30 kV, respectively.
268

STUDY OF THE TRANSPORT OF HEAVY METAL IONS THROUGH CATION-EXCHANGE MEMBRANES APPLIED TO THE TREATMENT OF INDUSTRIAL EFFLUENTS

Martí Calatayud, Manuel César 12 January 2015 (has links)
La presente Tesis Doctoral consiste en la determinación de las propiedades de transporte de diferentes especies catiónicas a través de membranas de intercambio catiónico. Las membranas de intercambio iónico son un componente clave de los reactores electroquímicos y de los sistemas de electrodiálisis, puesto que determinan el consumo energético y la eficiencia del proceso. La utilización de este tipo de membranas para el tratamiento de efluentes industriales no es muy extendida debido a los requisitos de elevada resistencia química y durabilidad que deben cumplir las membranas. Otro asunto importante radica en la eficiencia en el transporte de los iones que se quieren eliminar a través de la membrana. Normalmente, existe una competencia por el paso a través de las membranas entre diferentes especies debido al carácter multicomponente de los efluentes a tratar. Sin embargo, una mejora en las propiedades de las membranas de intercambio iónico permitiría la implantación del tratamiento mediante reactores electroquímicos de efluentes industriales con un contenido importante en compuestos metálicos, tales como los baños agotados de las industrias de cromado. La utilización de una tecnología limpia como la electrodiálisis conllevaría diferentes ventajas, entre las cuales destacan la recuperación de los efluentes para su reutilización en el proceso industrial, el ahorro en el consumo de agua y la disminución de la descarga de contaminantes al medio ambiente. La determinación de las condiciones de operación óptimas así como la mejora de las propiedades de transporte de las membranas constituye el principal tema de la presente investigación. Para ello, se emplearán diferentes tipos de membrana. En primer lugar, se estudiará el comportamiento de las membranas poliméricas comerciales que poseen unas propiedades de resistencia química elevadas, las cuales se tomarán como referencia. De forma paralela, se producirán membranas conductoras de iones a partir de materiales cerámicos económicos, ya que la resistencia de los materiales cerámicos a sustancias oxidantes y muy ácidas es mayor que la de los materiales poliméricos. Este punto constituye la parte más innovadora de la investigación, puesto que la mayoría de las membranas de intercambio iónico comerciales están basadas en materiales poliméricos que no pueden resistir las condiciones específicas de los efluentes industriales. Una vez determinadas las condiciones de operación óptimas, se realizarán ensayos en plantas piloto con el fin de confirmar los resultados obtenidos mediante las técnicas de caracterización y determinar el grado de recuperación y coste energético asociado a los procesos electrodialíticos de tratamiento de efluentes industriales. / Martí Calatayud, MC. (2014). STUDY OF THE TRANSPORT OF HEAVY METAL IONS THROUGH CATION-EXCHANGE MEMBRANES APPLIED TO THE TREATMENT OF INDUSTRIAL EFFLUENTS [Tesis doctoral]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/46004 / Premios Extraordinarios de tesis doctorales
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Interaccions entre ions metàl·lics i composts d'interès biològic (halouracils i derivats sintètics, hipurats i aciclovir). Interacciones metàl·liques que desenvolupen noves molècules anticanceroses

Barceló Oliver, Miquel 27 March 2009 (has links)
La química bioinorgánica se ocupa de estudiar la función de los metales en los sistemas biológicos y de la síntesis de modelos para estudiar sistemas más complejos. Enmarcados en esta, se han estudiado los modos de interacción y los patrones de reconocimiento presentes en los complejos ternarios metal - base nitrogenada - derivado de aminoácido. En primer lugar, se han obtenido un serie de complejos binarios de 5-halouracilatos con cobre(II), zinc(II) y níquel(II) que presentan un reconocimiento por tándem de enlaces de hidrógeno entre uracilos. Con ácido orto-iodohipúrico se han preparado una serie de complejos binarios con cobalto(II), níquel(II), cobre(II), zinc(II) y plata(I). Con estos y aciclovir se ha conseguido la formación de los complejos ternarios donde los de cobalto, níquel y zinc son isoestructurales y, debido a la presencia de un apilamiento entre el aciclovir y un anillo aromático de o-iodohipúrico, se generan en la estructura los dos enantiómeros &#948; (delta minúscula) y &#955; (lambda minúscula) si consideramos los dos ligandos como un quelato gracias a la interacción por apilamiento. Con cobre(II), ácidos hipúricos y 1,10-fenantrolina o 2,2'-bipiridilo se han preparado una serie de complejos ternarios capaces de generar la especie de cobre(I) [Cu(phen)2]+ y que presentan actividad anticancerosa frente a células A549. En todos los complejos con ácidos hipúricos se ha observado que la presencia del anillo aromático perpendicular al plano amídico genera estructuras bidimensionales, mientras que con ligandos planares del mismo tipo las estructuras son tridimensionales. Finalmente se han preparado análogos de nucleótidos tipo N1-alquiluracilos y de dinucleótidos tipo N1,N1'-polimetilen-bis-uracilos. / Bioinorganic chemistry deals with the study of the role of metal ions in biologic systems and the synthesis of model compounds to study more complex systems. In line with it, we have studied the interactions modes and recognition patterns that are present in ternary complexes of the type: metal ion - nucleobase - amino acid derivative. First of all, we have obtained a series of binary compounds with 5-halouracils and copper(II), zinc(II) and nickel(II) with a recognition pattern formed by a tandem of hydrogen bonds between uracils. With orto-iodohippuric acid, we have prepared some binary complexes with cobalt(II), nickel(II), copper(II), zinc(II) and silver(I). With these binary derivatives and acyclovir we have been capable to obtain ternary complexes were, the cobalt, nickel and zinc ones are isostructural and, due to the presence of a stacking between the acyclovir and one aromatic ring of o-iodohippuric acid, they generate in the crystal structure the two enantiomers &#948; (lower case delta) and &#955; (lower case lambda) if we consider the two ligands as a chelate by means of the stacking interaction. In the case of copper, we have prepared a series of ternary derivatives with different hippuric acids and 1,10-phenanthroline and 2,2'-bipyridyl. These complexes are capable to generate the copper(I) species [Cu(phen)2]+ and they present anticancer activity against A549 cell line. An important fact in all the coordination compounds with hippuric acids is that the presence of the aromatic ring normal to the amide bond promotes the formation of bi-dimensional structures, whereas with planar ligands of the same kind we obtain tri-dimensional structures. Last but not least, we have prepared nucleotide (N1-alkiluracils) and dinucleotide (N1,N1'-polymethilen-bis-uracils) type ligands.
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SCALABLE MANUFACTURING OF PRINTED APTASENSORS: DETECTION OF FOODBORNE PATHOGENS AND ENVIRONMENTAL CONTAMINANTS

Lixby Susana Diaz (8464110) 21 June 2022 (has links)
<p>The development of low-cost, and reliable platforms for on-site detection of pathogenic agents, and toxic environmental traces is still a critical need for real-time monitoring of potential environmental pollution and imminent outbreaks. The biosensors market is projected to attain 31.5 billion by 2024. In this landscape, colorimetric and electrochemical devices continue to have significant relevance, with paper-based platforms leading the point-of-care (POC) segment for pathogen detection and environmental monitoring.</p> <p>Despite the true potential of biosensors in general, they have witnessed a slow rate in commercialization, mainly due to cost restrictions, and concerns related to their reliability and repeatability once scaled-up. This research evaluates the implementation of printing techniques as a strong approach for the fabrication of paper-based and flexible electrochemical biosensors. The results obtained demonstrated the ability to control and predict the variables affecting the sensing performance, achieving high precision of the printing parameters, and allowing optimization, and iterations since very early stages of prototype development.</p> <p>Besides the novel fabrication approach, this work introduces the use of truncated aptameric DNA sequences for whole cell detection of E. coli O157:H7 and heavy metals (Hg2+ and As3+), providing evidence of high stability and robustness under harsh conditions. Results obtained demonstrate their equal or even superior performance when compared to antibodies.</p> <p>We established the use of aptamer-functionalized multilayered label particles (PEI-grafted gold decorated polystyrene) with high stability as label particles. These particles address the well known drawback of non-selective aggregation typical of traditional naked Gold nanoparticles. The outstanding stability of these multilayered labels was demonstrated when used in an enhanced version of the lateral flow assay for detection of E. coli O157:H7 (state of the art for paper-based colorimetric detection of whole cell bacteria), and in a multiplexed paper-based microfluidic device for dual detection of Mercury and Arsenic. This work sets the foundation of the development of a next generation of health care and environmental monitoring devices that are portable, sensitive, quantitative, and can reliably detect multiple targets with one single test.</p>

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