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Reactivity of metallacycles of palladium : experimental and computational studiesVan Niekerk, Daniel M. E. 03 1900 (has links)
Thesis (MSc)--Stellenbosch University, 2012. / ENGLISH ABSTRACT: Please refer to full text for abstract
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Spontaneous metathesis of bis-chelated PdII(L-S,O)2 complexes in solution : a rp-HPLC studyVan der Molen, Lynndal 03 1900 (has links)
Thesis (MSc (Chemistry and Polymer Science))--Stellenbosch University, 2008. / N,N-dialkyl-N-acyl(aroyl)thiourea ligands form stable chelated complexes in a cis
configuration with the platinum group metals. Such chelated complexes are generally
considered substitutionally “inert” in solution, however, it was found that cis-bis(N,Ndialkyl-
N-acyl(aroyl)thioureato)M(II) complexes (M = Ni(II), Pd(II) or Pt(II)) readily
undergo facile chelate metathesis reactions in solution at room temperature. Upon
mixing two different parent complexes, a mixed-ligand product formed in solution, with
an equilibrium, or steady state, between the two parent complexes and the mixed-ligand
product being attained after a period of time: M(LA)2 + M(LB)2 M(LA)(LB). All three
complexes remained in solution even with a ten-fold excess of one parent complex.
The presence of the mixed-ligand products in solution was confirmed by
liquid chromatography-mass spectrometry (LC-MS), nuclear magnetic resonance
(NMR) spectra and a crystal structure of the mixed-ligand complex
cis-Pd(L3-S,O)(L4-S,O). Though a number of attempts were made, it was not possible
to either isolate or synthesise the mixed-ligand complexes exclusively.
The equilibrium distribution and the rate of the metathesis reaction were influenced by a
number of factors, including the central metal ion, the substituents on the complexed
ligands and the reaction medium. In addition to these, a number of other factors, some
unexpected, also played a role in the rate of the reaction. Initial concentration of the
parent complexes, the age of the solutions upon mixing and the presence of impurities
or additives all contributed to the overall rate of reaction. The results from these rate
studies highlighted the necessity for extensively purified compounds.
In addition to chelate metathesis reactions, the exchange between a cis-Pd(L-S,O)2
complex and an unbound HL ligand in solution was also investigated. Again, even with
an excess of unbound ligand, all three possible complexes were present in solution.
It has been shown previously that these complexes undergo a photoinduced cis-trans
isomerisation under intense light, and it has been proposed that the reverse trans-cis
process, which occurs in the dark, may be a metathesis reaction. In light of this, the
relationship between these chelate metathesis reactions and the reverse trans-cis
reaction was briefly investigated.
Though the metathesis reactions were a general phenomenon in the Ni(II), Pd(II) and
Pt(II) complexes of the aforementioned ligands, the experiments focused mainly on the
cis-Pd(L-S,O)2 complexes due to the favourable timescales of their metathesis
reactions. The primary technique to observe these reactions was reversed-phase
high-performance liquid chromatography (rp-HPLC). The timescales involved in the
cis-Pd(L-S,O)2 metathesis reactions as well as the stability of the Pd(II) complexes
under the HPLC conditions made this technique ideal.
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Computational study of the boron-nitrogen dative bondZhao, Hailiang 12 1900 (has links)
Thesis (MSc (Chemistry and Polymer Science))--Stellenbosch University, 2007. / In this study, ten selected boron-nitrogen compounds and three borane carbonyl
complexes were investigated by a number of computational methods. It is well known
that the B-N dative bond is shorter in the solid state than in the gas phase. The B-CO
distance, on the other hand, displays the opposite effect.
Quantum mechanical techniques at the Hartree-Fock, Møller-Plesset second-order and
Density Functional Theory level were used to calculate the geometries of the isolated
molecules and to compare them with those found in molecular clusters built to model the
solid state. It was found that calculated geometries were very sensitive to the choice of
the basis set.
The effects of dipole-dipole interactions were further investigated by applying an external
electric field with varying strength to isolated molecules, and by replacing the central
molecule in a cluster with a different compound. The B-N bond was found to respond
much more to the applied field than the B-CO bond.
An effort was made to correlate the lengthening or shortening of the dative bond to the
strength of the crystal field, the latter being calculated classically from point charges.
Unfortunately, large differences were noted between the charges calculated with common
methods like Mulliken or Merz-Kollman-Singh. Furthermore, an analysis of 67 crystal
structures taken from the Cambridge Structural Database did not reveal a correlation
between the length of the B-N bond and the crystal field calculated with Charge
Equilibration charges.
Finally, a valence force field was developed for H3N-BH3. It was shown that a much
better fit of the vibrational spectrum can be obtained if the B-N stretching mode is
assigned to the 603 cm-1 band rather than the peak observed at 968 cm-1.
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The effect of molecular composition on the properties of linear low density polyethyleneKeulder, L. 03 1900 (has links)
Thesis (MSc (Chemistry and Polymer Science))--University of Stellenbosch, 2008. / In this study linear low density polyethylene (LLDPE), a copolymer consisting of ethylene and 1-butene, was fractionated by the use of temperature rising elution fractionation (TREF). These fractions were then analyzed by crystallisation analysis fractionation, 13C NMR, high temperature size exclusion chromatography and DSC. The molecular distribution of the polymer was investigated. It was found that the polymer had a very broad distribution in its chemical composition. From these results it was also clear that the catalysts used for the polymerisation consist out of different active sites, producing chains with different molecular architecture.
Subsequently the polymer was fractionated again by TREF and certain fractions were removed and the remaining material recombined. The removed fractions and recombined material were analyzed by 13C NMR, high temperature size exclusion chromatography, DSC and DMA. The results were compared with the bulk material and from this we could conclude the influence of the fractions removed on the material properties. This gave us more information on the influence of the chemical structure of the polymer on its mechanical properties. It was clear that by removing certain fractions with a certain chemical composition, the properties of the polymer are significantly influenced.
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Design, synthesis and characterization of novel raft agentsBivigou Koumba, Achille Mayelle 12 1900 (has links)
Thesis (MSc (Chemistry and Polymer Science))--University of Stellenbosch, 2005. / This thesis begins with the description of the preparation of thirteen dithioesters (of the form Z-
(C=S)-S-R) which were characterized via Fourier-transform infrared spectroscopy (FT-IR), nuclear
magnetic resonance spectroscopy (NMR) and ultraviolet spectroscopy (UV). The dithioesters were
then used as reversible addition-fragmentation chain transfer (RAFT) mediating agents in the bulk
polymerization of styrene, in order to observe differences in the kinetic behaviour of the
polymerizations and, as a result, the efficiencies of the dithioesters in mediating the
polymerizations.
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Organic-inorganic hybrid graft copolymers of polystyrene and polydimethylsiloxaneSutherland, Aimee Celeste 03 1900 (has links)
Thesis (MSc (Chemistry and Polymer Science))--University of Stellenbosch, 2010. / ENGLISH ABSTRACT:
Hybrid graft copolymers of polystyrene (PSty) and polydimethylsiloxane macromonomers (PDMS)
were synthesised. PSty-g-PDMS was synthesised employing the grafting through technique via a
conventionally free radical polymerization (FRP) using a polydimethylsiloxane macromonomer. In
this series the amount of PDMS incorporated into the copolymer was varied by varying the
macromonomer to styrene ratios as well as the length of the PDMS side chain. This allows for the
study of the effect that the macromonomer content and the branching length has on the efficiency
of the grafting process. A second series of PDMS-g-PSty was also synthesized where the PDMS
forms the backbone and the PSty the grafts. Two synthetic techniques were employed for the
formation of these polymers. Firstly, the grafting onto approach was used where functional
polystyrene prepolymers with either an allyl or vinyl end-groups were synthesised anionically
(living anionic polymerization) prior to the coupling of a functional prepolymer using a
hydrosilylation reaction with a Karstedt platinum catalyst. This technique was successful and gave
insight to the effect of the polystyrene prepolymer graft length has on the grafting efficiency as well
as the functional groups needed on the PDMS backbone. Furthermore, the effect of the viscosity
(of the PDMS macromonomer) plays on the grafting efficiency was also elucidated. Lastly, the
grafting from approach was employed for the formation of PDMS-g-PSty. ATRP, atom transfer
radical polymerization, of styrene using a bromoisobutyrate functional PDMS macroinitiator was
used for the synthesis of these copolymers. This was accomplished by reacting commercial silane
functional PDMS molecules via a hydrosilylation reaction (using a Karstedt catalyst) with allyl-2-
bromo-2-methyl-propionate to give a PDMS macroinitiator with bromoisobutyrate functional
groups. This will allow for the initiation and growth of polystyrene branches from the PDMS
backbone (employing ATRP with a suitable catalyst and ligand). The formation of the endproduct,
PDMS-g-PSty, via this route proved to be extremely difficult and largely unsuccessful.
Liquid chromatography (LC) at the critical point (LCCC) of polystyrene was used to separate the
graft material from homo-polymers which might have formed as well as from the PDMS
macromonomer. This technique allows for a very fast chromatographic analysis of the grafting
reaction. Under the critical conditions of PSty it was found that the graft copolymer eluted at a
lower retention time than the unreacted macromonomer and PSty homopolymer. Two-dimensional
chromatography, where LCCC (1st dimension) was coupled to size exclusion chromatography (2nd
dimension), was used for the evaluation of the CCD and MMD (molecular mass distribution) of the
graft material. LC was furthermore coupled off-line to FTIR and TEM using an LC interface. LCFTIR
gave insight to the microstructure of the material, whilst LC-TEM gave insight to the
morphological nanostructure of the material. / AFRIKAANSE OPSOMMING:
Hibried ent-kopolimere is gesintetiseer uit polistireen (PSty) en polidimetielsiloksaan (PDMS).
PSty-g-PDMS is gesintetiseer deur gebruik te maak van die ent-deur tegniek via ‘n konvensionele
vrye radikaal polimerisasie proses (VRP). In die reeks is die hoeveelheid PDMS wat geïnkorporeer
is, gevarieer deur die hoeveelheid PDMS tot PSty verhouding te verander asook die lengte van die
PDMS sytak. Gevolglik het dit toegelaat vir die studie van die effek wat die makromonomeer
inhoud, sowel as die taklengte het op die effektiwiteit van die ent-proses. ‘n Tweede reeks is ook
gesintetiseer, waar die PDMS die ruggraat vorm van die ko-polimeer, en die stireen die takke vorm
van die ko-polimeer. Dus is PDMS-g-PSty gesintetiseer. Twee sintetiese tegnieke is benut vir die
vorming van die kopolimere. In die eerste geval is daar van die ent-op tegniek gebruik gemaak
waar funksionele polistireen prepolimere met ‘n alliel of ‘n silaan end-groep gesintetiseer is deur
gebruik te maak van ‘n anioniese lewendige polimerisasie voor die koppeling van die PDMS
makromonomere deur ‘n hidrosililasie proses met ‘n Karstedt platinum katalisator. Die tegniek
was suksesvol en het in diepte insig gegee van die effek wat die molekulêre lengte van die
polistireen prepolimeer het op die effektiwiteit van die ent-proses, sowel as die minimum
hoeveelheid funksionele groepe wat teenwoordig moet wees op die PDMS ruggraat. Verder is die
effek wat die viskositeit (van die PDMS makromonomeer) op die ent-proses het, bekend gemaak.
Laastens is daar ook van die ent-vanaf tegniek gebruik gemaak vir die vorming van PDMS-g-PSty.
AORP, atoom oordrag radikale polimerisasie, van stireen, deur gebruik te maak van ‘n
bromoisobutiraat funksionele PDMS makro-inisieerder, is gebruik vir die sintese van die
kopolimere. Die makro-inisieerders is bekom deur gebruik te maak van kommersiële silaan
funksionele PDMS, en dit is gereageer deur middel van ‘n hidrosililasie proses met alliel-2-bromo-
2-metiel-propionaat. Dit het PDMS makroinisieerders tot gevolg gehad met bromoisobutiraat
funksionele groepe. Gevolglik kon stireen takke vanaf die PDMS ruggraat gegroei word deur
gebruik te maak van AORP met ‘n geskikte katalisator en ligand. Die vorming van die end-produk,
PDMS-g-PSty, deur middel van hierdie roete was onsuksesvol. Vloeistof chromatografie by die
kritiese punt van polistireen was gebruik om die ent-produk te skei van die homo-polimere en
PDMS makromonomeer. Gevolglik kon die chemiese samestelling van die ent-produk geëvalueer
word. Twee-dimensionele chromatografie, waar vloeistof chromatografie by die kritiese punt van
polistireen in die eerste vlak gekoppel was aan grootte uitsluitings chromatografie in die tweede
vlak, was benut om die chemiese komposisie sowel as die molekul re massa verdeling van die entproduk
te verkry. Verder was vloeistof chromatografie indirek aan Fourier-oordrag infrarooi en
transmissie elektron mikroskopie (TEM) gekoppel. Eergenoemde het insig gegee tot die
mikrostruktuur van die materiaal, terwyl laasgenoemde insig gegee het tot die morfologiese
nanostruktuur van die materiaal.
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Poly(acrylonitrile/methyl acrylate) copolymers and clay nanocomposites : structural and property relationshipsZengeni, Eddson 12 1900 (has links)
Thesis (MSc (Chemistry and Polymer Science))--University of Stellenbosch, 2009. / Thesis submitted in partial fulfillment of the requirements for the degree
of Master of Science (Polymer Science)
at University of Stellenbosch. / ENGLISH ABSTRACT: The preparation of poly(acrylonitrile/methyl acrylate) [poly(AN-co-MA)] copolymers and
poly(AN-co-MA)/clay nanocomposites, via emulsion polymerization, their characterisation,
and the relationships between their molecular structures and physical properties are described.
The copolymer composition was varied, and the properties of the products were analysed and
correlated to copolymer composition.
The free volume properties of the copolymer were dependent on the glass transition
temperature (Tg), which is dependant on the copolymer composition. The copolymer
crystallinity decreased with increasing MA content. The decrease in crystallinity and increase
in both o-Ps lifetime and o-Ps intensity with decreasing Tg was caused by the enhanced chain
mobility brought about by the incorporation of methyl acrylate.
The poly(acrylonitrile-co-methyl acrylate)/clay nanocomposites with 60% AN:40%
MA (mol:mol) ratio were prepared using montmorillonite clay modified via adsorption, using
2-acrylamido-2-methyl-1-propanesulphonic acid (AMPS), via in-situ intercalation
polymerization. The poly(AN-co-MA)/clay nanocomposites with different clay loadings
showed no difference in morphology. They exhibited improved thermomechanical properties
and higher thermal stability than the neat copolymers.
The melt rheology results of these nanocomposites showed an improved storage
modulus as well as increased shear thinning behaviour with increasing clay content. However,
the nanocomposites exhibited long-time relaxation behaviour and their chemical structures
evolved during analysis. This was attributed to cyclisation reactions taking place at the
temperature used during the oscillatory tests.
The sorption isotherms of water vapour in these nanocomposites followed a dualmode
sorption behaviour (BET type II mode). Hysteresis was observed in sorption/desorption
isotherms of these nanocomposites. The equilibrium water uptake was higher in the nanocomposites compared to the neat copolymers, and it increased with increasing clay
content, especially at high water activities (0.8).
Although diffusion and permeability decreased with increasing clay content the
solubility increased due to the hydrophilic nature of the clay. Despite the decrease in diffusion
and permeability parameters the free volume hole radius of the nanocomposites remained constant, but a slight decrease in free volume hole number was observed. / AFRIKAANSE OPSOMMING: Die bereiding van poli(akrilonitriel/metielakrilaat) [poli(AN-ko-MA)] kopolimere en
poli(AN-ko-MA)/klei nanosamestellings deur middel van emulsiepolimerisasie, hul
karakterisering asook die ooreenkoms tussen hul molekulêre strukture en fisiese eienskappe is
beskryf. Die kopolimeersamestelling is gevarieer, en eienskappe is geanaliseer en dan
gekorreleer met die kopolimeersamestelling.
Die vrye-volume eienskappe van die kopolimeer was afhanklik van die
glasoorgangstemperatuur (Tg) wat weer afhanklik is van die kopolimeersamestealling. Die
kristalliniteit van die kopolimeer het verminder met die hoeveelheid MA teenwoordig. Die
afname in kristalliniteit en toename in beide die o-Ps leeftyd en o-Ps intensiteit met afname in
Tg is veroorsaak deur die beter kettingbeweegbaarheid wat veroorsaak is deur die byvoeging
van metielakrilaat.
Die poli(akrilonitriel-ko-metielakrilaat)/klei nanosamestellings met 60% AN:40% MA
(mol:mol) verhouding is berei deur die gebruik van montmorillonietklei, gemodifiseer deur
die adsorpsie van 2-akrielamido-2-metiel-1-propaansulfoonsuur (AMPS) deur middel van 'n
in-situ interkaleringspolimerisasie. Die poli(AN-ko-MA)/klei nanosamestellings het, ten spyte
van die verskillende hoeveelhede klei wat gebruik is, geen verandering in morfologie getoon
nie. Hulle het wel beter termodinamiese eienskappe en hoër termiese stabiliteit as die
oorspronklike kopolimere getoon.
Die smeltreologie resultate van hierdie nanosamestellings het ‘n beter stoormodulus
getoon, sowel as toenemende skuifverdunningsgedrag met 'n verhoogde klei inhoud. Tog het
die nanosamestellings lang tyd-ontspanningsgedrag getoon en die chemiese struktuur het
verander tydens analise. Dit word toegeskryf aan die sikliese reaksies wat plaasvind by die
temperatuur wat gebruik is tydens die ossillatoriese toetse.
Die sorpsie isoterme van waterdamp in hierdie nanosamestellings het ‘n dubbel-styl
sorpsiegedrag gevolg (BET tipe II styl). Histerese is waargeneem in sorpsie/desorpsie isoterme van hierdie nanosamestellings. Die ewewig in wateropname van die
nanosamestellings was hoër as vir dié van die oorspronklike kopolimere en dit het toegeneem
met 'n toenemende klei inhoud, veral by hoë humiditeit (0.8).
Al het die diffusie en deurlaatbaarheid afgeneem met 'n toename in die klei inhoud,
het die oplosbaarheid toegeneem as gevolg van die hidrofiliese karakter van die klei. Ten
spyte van die afname in diffusie en deurlaatbaarheidsparameters, het die radius van die vryevolume
openinge van die nanosamestellings konstant gebly, maar ‘n klein afname in die aantal vrye-volume openinge is gevind.
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Synthesis and investigation of smart nanoparticlesKoen, Yolande 12 1900 (has links)
Thesis (MSc (Chemistry and Polymer Science))--University of Stellenbosch, 2010. / ENGLISH ABSTRACT:
The use of various ‘smart materials’ (briefly meaning materials that respond to a change in
their environment) is currently of interest to both academics and industry. The primary aim of
the current study was to entrap photochromic (PC) dyes in miniemulsions, as a means to
improve their fatigue resistance, thus synthesizing smart nanoparticles. In the coatings industry
the use of aqueous systems is becoming a common requirement for health and environmental
reasons.
Miniemulsion entrapment allows the direct dispersion of PC dyes into aqueous systems while
allowing for the opportunity to tailor-make the host matrix in order to obtain a suitable PC
response and improved fatigue resistance.
The optimal instrument set-up required to establish the PC response of films of the so-called
smart nanoparticles (i.e. PC miniemulsions) was determined. A UV-Vis instrument with a
chip-type UV LED mounted inside for activation of the samples provided PC response results.
A tungsten lamp with filter provided deactivation of the samples.
A stable butyl methacrylate (BMA) miniemulsion formulation was established by conducting a
design of experiments. A chromene and spironapthoxazine (SNO) PC dye were entrapped in
the BMA miniemulsion. A hindered amine light stabiliser (HALS) was also entrapped with the
SNO dye in the BMA miniemulsion to further improve the fatigue resistance. The following
PC properties of the smart nanoparticles films were evaluated: colourability, thermal decay
rate, half-life and fatigue resistance. To compare results with conventional systems, a BMA
solution polymer was prepared. The SNO dye and different concentrations of the HALS were
mixed with the BMA solution polymer.
In comparison to the SNO smart nanoparticles the chromene smart nanoparticles films had
lower colourability, but better fatigue resistance.
Incorporating HALS at levels of 0.5–2% in the BMA miniemulsion with PC dye did not lead
to any significant improvement in fatigue resistance, yet films of the BMA solution polymer
showed some improvement.
SNO dye incorporated at 1% gave similar colourability in both miniemulsion and in solution
polymer, yet the fatigue resistance of the films of the PC miniemulsions was much better. / AFRIKAANSE OPSOMMING:
Die gebruik van verskeie “slim materiale’ (kortliks beskryf as materiale wat reageer op `n
verandering in hul omgewing) is tans van belang vir beide akademici en die industrie. Die hoofdoel
van hierdie studie was om miniemulsietegnologie te gebruik om fotochromiese (FC) kleurstowwe
vas te vang, vir die sintese van slim nanopartikels, om sodoende die weerstand teen afgematheid te
verbeter. In die verfindustrie word die gebruik van waterbasissisteme meer algemeen weens
gesondheids- en omgewingsredes.
Die gebruik van miniemulsie sisteme om materiale vas te vang maak dit moontlik om FC
kleurstowwe direk in waterbasissisteme te meng. Die sintese van `n unieke gasheer matriks word
benodig om die optimum FC verandering te toon en weerstand teen afgematheid te verbeter.
Om die FC verandering van die sogenaamde slim nanopartikel films (d.w.s. FC miniemulsies) te
ondersoek was `n gepaste instrumentele opstelling nodig. Dit is vasgestel dat `n UV-Vis instrument
waarin `n skyfie-tipe UV LED gemonteer is vir aktivering van die monsters, reproduseerbare
resultate gegee het. Die monsters is gedeaktiveer deur gebruik te maak van `n tungsten lig met ‘n
filter.
`n Eksperimentele ontwerp is toegepas om `n stabiele butielmetakrielaat (BMA) miniemulsie
formulasie te verkry. `n ‘Chromene’ en ‘spironapthoxazine’ (SNO) FC kleurstof is in die BMA
miniemulsie vasgevang tesame met `n verhinderde amien ligstabiliseerder (VALS) om die
weerstand teen afgematheid verder te verbeter. Die volgende FC eienskappe van die slim
nanopartikels is gemeet: kleurintensiteit, tempo van termiese verwering, half-lewe en weerstand
teen afgematheid. `n BMA polimeeroplossing is berei om resultate mee te vergelyk. Die SNO
kleurstof en verskillende konsentrasies van die VALS is met die BMA polimeeroplossing gemeng.
In vergelyking met die slim SNO nanopartikels het die intelligente chromene nanopartikelfilms `n
swakker kleurintensiteit gehad, maar `n hoër weerstand teen afgematheid.
Die gebruik van 0.5–2% VALS in die BMA miniemulsie met FC kleurstof het minimale
verbetering in weerstand teen afgematheid getoon, maar daar was wel `n beduidende verbetering in
die geval van films met FC kleurstof in `n BMA polimeeroplossing.
Byvoeging van 1% SNO kleurstof in `n BMA miniemulsie of polimeeroplossing het dieselfde
kleurintensiteit gelewer, maar die weerstand teen afgematheid van die FC miniemulsie was baie
beter.
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Multidimensional fractionation of wood-based tanninsRadebe, Nonhlanhla Mtandi 03 1900 (has links)
Thesis (MSc)--University of Stellenbosch, 2011. / ENGLISH ABSTRACT: High molar mass tannin extracts are complex mixtures which are distributed in both molar mass and chemical composition. Condensed tannins from quebracho and mimosa and hydrolysable tannins of tara, chestnut wood and turkey gall were studied. Application of a single analytical technique is not sufficient to elucidate the complete structures present in the extracts. 13C Nuclear Magnetic Resonance (NMR) spectroscopy and Matrix Assisted Laser Desorption/Ionisation Time-of-Flight (MALDI-TOF) mass spectrometry were applied in order to determine the chemical composition and molar mass, respectively. A new mass spectrometric method that can uniquely determine the oligomer microstructure was developed using Collision Induced Dissociation (CID) experiments. Bulk analysis only showed the average composition of the extracts, in order to obtain specific information on the molar mass and chemical composition distributions. Hydrophilic Interaction Liquid Chromatography (HILIC) was used for analysis of the condensed tannins and for the hydrolysable tannins Normal Phase Liquid Chromatography (NP-LC) was utilised. The HILIC separation was up-scaled and the fractions were collected and analysed by MALDI-TOF, and this coupling revealed that separation occurs by molar and chemical composition. For separation of the molecules only by size, Size Exclusion Chromatography (SEC) analyses were carried out; this allowed for relative comparison of the tannin molecules. In conclusion, for characterisation of high molar mass tannins a multi-dimensional approach was necessary since the various distributions present in these extracts are superimposed. / AFRIKAANSE OPSOMMING: Hoë molekulêre massa tannienekstrakte is komplekse mengsels, in terme van beide molekulêre massa en chemiese samestelling. Gekondenseerde tanniene vanaf quebracho en mimosa, en hidroliseerbare tanniene vanaf tara, kastaaiinghout en Turksegal is bestudeer. Die gebruik van ‘n enkele analitiese tegniek is nie voldoende om die volledige struktuur van komponente teenwoordig in die ekstrakte te analiseer nie. 13C KMR-spektroskopie en MALDI-TOF-massaspektroskopie is gebruik om die chemiese samestelling en molekulêre massa, onderskeidelik, te bepaal.
‘n Nuwe metode is ontwikkel vir die bepaling van die oligomeer-mikrostruktuur deur gebruik te maak van botsings-geïnduseerde dissosiasie eksperimente. Grootmaat analise het net die gemiddelde samestelling van die ekstrak bepaal. Hidrofiliese-interaksie-vloeistofchromatografie (HILIC) is gebruik vir die analise van gekondenseerde tanniene en gewone fase-vloeistofchromatografie is gebruik vir die hidroliseerbare tanniene. Die HILIC-skeiding is op groter skaal uitgevoer en die fraksies is versamel en gebruik vir MALDI-TOF analise. Hierdie koppeling het getoon dat skeiding plaasvind op grond van molekulêre massa en chemiese samestelling.
Grootte-uitsluitingschromatografie is gebruik vir die skeiding van molekules alleenlik op grootte. Hierdeur kon ‘n relatiewe vergelyking van die tannienmolekules gemaak word.
Vir die karakterisering van hoë molekulêre massa tanniene is ‘n multi-dimensionele benadering nodig aangesien die verskeie verspreidings teenwoording in hierdie ekstrakte supergeponeerd is.
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Impact of molecular structure on water vapour sorption properties in nanostructured polymeric filmsCloete, Valeska 12 1900 (has links)
Thesis (PhD)--Stellenbosch University, 2011. / ENGLISH ABSTRACT: In this study, the use of surfactants, plate-like clays, organophilic molecules and side-chain
crystallinity was investigated for their impact on the transport mechanisms of water vapour
through polymer films. A model polymer latex, poly(styrene-co-butyl acrylate), was prepared using miniemulsion
polymerization. Three different types of surfactants, sodium dodecyl benzene sulfonate (SDBS, an
anionic surfactant), octyl phenol ethoxylate (OPE, a nonionic surfactant) and dodecyl ammonium-
3-butenoate (DA3B, a reactive surfactant) were used to stabilize the latex. Films were prepared
from the resultant latices and their water vapour sorption behaviour determined across a water
vapour partial pressure range of 0.1 to 0.9. Sigmoidal kinetic behaviour was seen for all three
films, with the DA3B stabilized film exhibiting high diffusion coefficients compared to films
stabilized with SDBS and OPE. The thermodynamic behaviour of the films differed and was
dependent on the reactivity of the surfactant. SDBS and OPE stabilized films exhibited Flory-
Huggins behaviour, while the DA3B stabilized film followed Henry’s Law. Despite significant
differences in terms of these properties, the permeability coefficients were similar for the three
films across the water vapour partial pressure range evaluated.
The impact of sodium montmorillonite (Na-MMT) clay and an organophilic modifier, 2-
acrylamido-2-methylpropanesulfonic acid (AMPS), on the water vapour sorption properties of
poly(styrene-co-butyl acrylate) was evaluated. These polymer clay nanocomposites (PCNs) were
synthesized using miniemulsion polymerization. The resultant latex films were characterized and
used for water vapour sorption analyses. It was shown that complete exfoliation of the Na-MMT
was necessary to minimize the equilibrium water vapour uptake. Even when Na-MMT was
completely exfoliated, the amount of water vapour sorbed by the PCN was high and this was
attributed to the hydrophilic nature of the clay. Using a least squares regression fit, good
correlation was obtained between the experimental isotherms and the sorption behaviour
predicted by the Dual Mode Sorption model which was originally developed for polymers in their
glassy state. The impact of side chain crystallinity on the water vapour sorption properties of
poly(methyl methacrylate-co-octadecyl acrylate) was evaluated. These random
copolymers containing increasing amounts of octadecyl acrylate, and therefore increasing
degrees of crystallinity, were synthesized using solvent polymerization. Although it could
be expected that side chain crystallinity would be the main contributing factor resulting in
a reduction in the diffusion coefficient, it was shown that the methyl group on the á-
carbon of the vinyl group in the methacrylate reduced the diffusion to a greater extent
through the increased stiffness of the polymer backbone. This was also reflected in
poly(methyl methacrylate-co-octadecyl acrylate) having a greater activation energy for
diffusion compared to polyoctadecyl acrylate. / AFRIKAANSE OPSOMMING: In hierdie studie is die gebruik van sepe, plaatagtige kleie, organofiliese molekules en sykettingkristalliniteit
ondersoek ten opsigte van die impak op transportmeganismes van
waterdamp deur polimeerfilms.
‘n Model polimeerlateks, polistireen-ko-butielakrilaat, is voorberei deur miniemulsiepolimerisasie.
Drie verskillende tipes sepe, natriumdodekielbenseensulfonaat (NDBS, ‘n anioniese seep),
oktielfenoletoksilaat (OFE, ‘n nie-ioniese seep) en dodekielammonium-3-butenoaat (DA3B, ‘n
reaktiewe seep) is gebruik om die lateks te stabiliseer. Films is van die resultante lateks voorberei
en hul waterdampsorpsie –eienskappe oor die parsiële waterdampdrukreeks van 0.1 tot 0.9
bepaal. Sigmodale kinetiese gedrag is vir al drie films waargeneem, met die DA3B gestabiliseerde
film wat hoër diffusiekoëffisiënte toon in vergelyking met die films wat met NDBS en OFE
gestabiliseer is. Die termodinamiese gedrag van die films het verskil en was afhanklik van die
reaktiwiteit van die seep. NDBS en OFE gestabiliseerde films het Flory-Huggins gedrag getoon,
terwyl die DA3B gestabiliseerde film Henry se Wet gevolg het. Ten spyte van die beduidende
verskille ten opsigte van hierdie eienskappe was die permitiewe koëffisiënte soortgelyk vir die
drie films regoor die parsiële waterdampdrukreeks wat vir die evaluasie gebruik is.
Die impak van natriummontmorilloniet (Na-MMT) klei en ‘n organofiliese modifiseerder, 2-
akrielamido-2-metielpropaansulfoonsuur (AMPS), op die waterdampsorpsie-eienskappe van
polistireen-ko-butielakrilaat is geevalueer. Hierdie polimeer-klei-nanosaamgesteldemateriale
(PKNe) is gesintetiseer deur van miniemulsiepolimerisasie gebruik te maak. Die resultante
lateksfilms is gekarakteriseer en gebruik vir waterdampsorpsie analises. Daar is getoon dat
algehele afskilfering van die Na-MMT nodig was om die ewewigswaterdampopname te
minimaliseer. Selfs wanneer Na-MMT algeheel afgeskilfer was, was die hoeveelheid waterdamp
gesorbeer deur die PKN hoog en kan dit toegeskryf word aan die hidrofiliese karakter van die klei.
Deur ‘n kleinste-kwadrate-regressie passing te doen, is ‘n goeie korrelasie verkry tussen die
eksperimentele isoterme en die sorpsie gedrag voorspel deur die Dubbelmodussorpsiemodel wat
oorspronklik ontwikkel is vir polimere in hul glasagtige toestand. Die impak van sykettingkristalliniteit op die waterdampsorpsie-eienskappe van
poli(metielmetakrilaat-ko-oktadekielakrilaat) is ondersoek. Hierdie ewekansige kopolimere wat
toenemende hoeveelhede oktadekielakrilaat, en dus toenemende grade van kristalliniteit bevat,
is gesintetiseer deur van oplossingspolimerisasie gebruik te maak. Alhoewel dit te wagte was dat
sykettingkristalliniteit die hoofbydraende faktor is in die redusering van die diffusiekoeffisiente, is
daar getoon dat die metielgroep aan die α-koolstof van die vinielgroep in die metakrilaat die
diffusie tot 'n groter mate gereduseer het deur toenemende styfheid van die polimeerrugraat. Dit
is ook gereflekteer deur poli(metielmetakrilaat-ko-oktadekielakrilaat) wat 'n groter
aktiveringsenergie vir diffusie het in vergelyking met polioktadekielakrilaat.
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