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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.
51

Décarboxilation catalytique de l'acide palmique en n-pentadécane / Catalytic decarboxylation of palmitic acid to n-pentadecane

Mapembé Kimené, Anouchka 04 December 2017 (has links)
La réaction de décarboxylation de l’acide palmitique en n-pentadécane a été étudiée en réacteur discontinu en présence de catalyseurs bimétalliques de type Ni-Me (où Me=Fe, Cu ou Ag) supportés sur charbon actif. Ces catalyseurs ont été préparés à l’aide d’un robot haut débit disponible sur la plateforme REALCAT de l’UCCS par déposition-précipitation en utilisant l’hydrazine comme agent réducteur afin de mieux maitriser la taille des nanoparticules métalliques, leur distribution et leur degré de réduction. Ces derniers ont été caractérisés par ICP, adsorption d’azote, XPS, XRD et TEM afin d’obtenir des informations relatives à leurs compositions, leurs propriétés texturales, surfaciques et morphologiques. Dans cette étude, l’optimisation du procédé catalytique a également été étudiée pour divers paramètres de réaction pour les catalyseurs les plus prometteurs. D’une part, l’impact de l’ajout d’un second métal sur les performances des catalyseurs à base de nickel a été étudié, et, d’autre part, l’effet de la température, de la durée de réaction, des concentrations initiales en réactifs, de l’atmosphère réactionnelle et de la masse de catalyseur utilisée ont été investiguées. Dans ce contexte, le catalyseur bimétallique 10%Ni10%Cu/C convertit complètement l’acide palmitique avec une sélectivité de 95 % en n-pentadecane à 320 °C sous une atmosphère contenant 10% de H2 dans N2 et pour une pression initiale de 20 bar. La réaction s’est déroulée pendant 6 h. Ce catalyseur a présenté une excellente stabilité après trois tests de recyclage consécutifs / The catalytic decarboxylation of palmitic acid to n-pentadecane was studied in a batch reactor in the presence of bimetallic Ni-Me catalysts (where Me = Fe, Cu or Ag) supported on activated carbon. These catalysts were prepared using a high-throughput robot of the REALCAT platform of UCCS by deposition-precipitation using hydrazine as reducing agent. These catalysts were characterized by ICP, N2 adsorption, XPS, XRD and TEM in order to obtain information relative to their compositions, textural properties, surfaces and morphologies. In this study, the optimization of the catalytic process was also investigated for various reaction parameters for the most promising samples. The main studied parameters were, on the one hand, the impact of the addition of a second metal on the performance of the nickel-based catalysts and, on the other hand, the effect of temperature, reaction time, initial reactant concentrations, atmosphere and mass of catalyst used. The conclusion of this study is that the 10%Ni10%Cu/C completely converts palmitic acid with a selectivity of 95 % to n-pentadecane in 6 h, at 320 °C under 10% H2 in N2 at an initial pressure of 20 bar. This catalyst exhibited excellent recyclability after three consecutive tests
52

Matrix Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry som verktyg för att detektera nedbrytning av Ceftolozan/Tazobaktam orsakad av karbapenemaser / Matrix Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry as a tool for detecting degradation of Ceftolozane/Tazobactam caused by carbapenemases

Saad, Bessem January 2020 (has links)
Under senare år har en särskilt hög resistensutveckling observerats hos gramnegativa bakterier inom familjen Enterobacteriaceae. Den främsta resistensmekanismen utgör produktion av så kallade "extended-spectrum β-lactamases" (ESBL) och särskilt oroväckande är karbapenemaser (ESBLCARBA) som har förmåga att bryta ner ett flertal olika grupper av β-laktamantibiotika. Matrix Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry (MALDI-TOF MS) har utforskats som metod för snabb detektion av karbapenemasaktivitet genom analys av nedbrytning av antibiotika. Syftet med denna studie var att utvärdera om MALDI-TOF MS kan användas som metod för att detektera enzymatisk nedbrytning av Ceftolozan/Tazobaktam samt att undersöka vilka enzymer som uppvisar nedbrytning av antibiotikan. Sju karbapenemasproducerande isolat och en β-laktamasnegativ kontrollstam användes i studien. Isolaten inkuberades 120 min respektive 270 min med antibiotika (1mg/ml) i en buffertlösning (0,08% ammoniumbikarbonat, pH 8). Efter centrifugering analyserades supernatanten med MALDI-TOF MS. Nedbrytning av Ceftolozan detekterades hos samtliga karbapenemasproducerande stammar, utom hos E. coli med NDM-1 produktion. Nedbrytningstoppar av Tazobaktam detekterades emellertid enbart hos stammar med OXA-48 och NDM-7 produktion. Tydligast nedbrytning sågs efter 120 min. För tydligare visualisering av nedbrytningstoppar bör metoden dock optimeras med avseende på matrix, buffert och antibiotikakoncentration. / In recent years, an alarming increase of antibiotic resistance has been observed in Gram-negative bacteria, classified in the family Enterobacteriaceae. The main resistance mechanism is the production of extended-spectrum β-lactamases (ESBL). Particularly worrisome is the production of carbapenemases (ESBLCARBA) due to their ability to hydrolyze a broad range of β-lactams. Recently, Matrix Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry (MALDI-TOF MS) has been investigated as a method for rapid detection of carbapenemase activity through observation of antibiotic degradation. The aim of this study was to investigate whether MALDI-TOF MS can be used as a method to detect degradation of Ceftolozane/Tazobactam as well as to examine which enzymes that possess the ability to hydrolyze the antibiotic. A total of seven carbapenemase-producing strains were used in the study. The experiment also included a β-lactamase-negative isolate as a negative control. The strains were incubated with antibiotic (1mg/ml) in a buffered solution (0,08% ammonium bicarbonate, pH 8) for 120 min and 270 min. The supernatant, after centrifugation, was analyzed by MALDI-TOF MS. All the carbapenemase-producing strains demonstrated hydrolysis of Ceftolozane, except for NDM-1 producing E. coli. However, mass peaks corresponding to the degradation of Tazobactam were only detected in strains producing OXA-48 and NDM-7. The degradation of Ceftolozane/Tazobactam was most apparent after 120 minutes. However, to better enable detection of mass peaks, further optimization is needed in regard to appropriate matrix, buffer and antibiotic concentration.
53

Reações de α-sulfonil carbânions: alquilação e sulfenilação de alguns α-sulfonil tioésteres. Descarboxilação alquilativa dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo / Α-sulfonyl carbanions reactions: alkylation and sulfenylation of some α-sulfonyl thioesters. Alquilativa decarboxylation of α-phenylsulfonyl-α-phenylpropanoic racemic acids and optically active

Neves, Regina Maria de Almeida 27 October 2000 (has links)
A presente tese trata de α-sulfonil carbânions, trazendo uma contribuição para a compreensão da sua estabilidade conformacional e reatividade frente a reagentes eletrofílicos. As reações investigadas foram as alquilações e sulfenilações de α-sulfonil tioésteres e as descarboxilações alquilativas dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo. A apresentação e discussão dos resultados das reações de alquilação e sulfenilação é precedida por uma revisão bibliográfica que apresenta os trabalhos mais relevantes da literatura sobre as reações de α-sulfonil carbânions com diversos eletrófilos, envolvendo reações tais como: halogenação, alquilação, acilação, condensação e sulfenilação. Os estudos das reações de alquilação, por nós efetuados com dois diferentes α-sulfonil tioésteres, empregando o método em fase homogênea, indicaram que, no caso dos haletos de metila, etila e alila, foram obtidas misturas dos produtos mono- e di- alquilados, enquanto que no caso do brometo de benzila houve formação exclusiva de produtos monoalquilados (ver arquivo). Entretanto, a alquilação pelo emprego do método de catálise de transferência de fase (CTF), efetuada com o α-fenilsulfonil tioacetato de metila, conduziu exclusivamente aos produtos monoalquilados correspondentes, independentemente do reagente alquilante empregado (ver arquivo). Estes resultados mostraram a superioridade do método em transferência de fase sobre o em fase homogênea. Os estudos das reações de sulfenilação, efetuados com o α-fenilsulfonil tioacetato de metila e os seus derivados α-alquilsubstituídos, empregando o método CTF, conduziram exclusivamente aos produtos monossulfenilados (ver arquivo). Neste caso, o método em transferência de fase também se mostrou superior ao em fase homogênea, sendo os produtos monossulfenilados obtidos em maior rendimento. É sugerido um mecanismo para as reações de alquilação e sulfenilação de α-sulfonil tioésteres em CTF, empregando sistema sólido / líquido, o qual explica a ausência, nestas condições reacionais, dos produtos dialquilado e dissulfenilado. A apresentação e discussão dos resultados das reações de descarboxilação alquilativas dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo é precedida por uma introdução que apresenta os estudos mais relevantes da literatura sobre as reações de descarboxilação de ácidos α-sulfonil carboxílicos na presença de eletrófilos, tais como hidrogênio, halogênio, carbono e enxofre. São de especial interesse os estudos envolvendo o curso estereoquímico da reação de descarboxilação protonativa de ácidos α-sulfonil carboxílicos opticamente ativos em meio alcalino, demonstrando a grande estabilidade do α-sulfonil carbânion, que retém a sua configuração original, sendo esta mantida mesmo após a protonação. Estas investigações se relacionam com os nossos estudos de descarboxilação alquilativa dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo, efetuados em continuação aos estudos anteriores de descarboxilações alquilativas dos ácidos α-fenilsulfonil-α-fenil carboxílicos realizados no nosso laboratório. Os nossos resultados mostraram que é possível obter a sulfona tetrassubstituída pela reação do ácido α-fenilsulfonil-α-fenilpropanóico com iodeto de etila na presença de NaH / DMSO, desde que se expulse o CO2 formado na reação (ver arquivo). É apresentada a síntese do ácido α-fenilsulfonil-α-fenilpropanóico opticamente ativo, o qual foi obtido por vários passos reacionais, através da resolução do ácido α-fenilsulfenil-α-fenilpropanóico e a sua posterior oxidação. A configuração de ambos os compostos foi determinada pela análise de raios X, mostrando ser o isômero S. As sínteses destes ácidos foram efetuadas por dois métodos distintos, constituídos de 3 e 5 passos reacionais. Entretanto, não foi possível obter a sulfona tetrassubstituída opticamente ativa pela reação do ácido α-fenilsulfonil-α-fenilpropanóico opticamente ativo com iodeto de etila nas mesmas condições empregadas no caso do composto racêmico correspondente. Foi obtido um esclarecimento do processo da descarboxilação de ácidos α-sulfonil carboxílicos a partir de cálculos semi-empíricos que mostraram a existência de duas etapas intermediárias na descarboxilação dos respectivos carboxilatos, ou seja, uma em que o CO2 se liga ao carbânion (I) e outra, de mais baixa energia, em que ele se liga ao oxigênio sulfonílico (II) (ver arquivo). Foram fornecidas provas, através de experiências comparativas de alquilação e protonação, que para que o α-sulfonil carbânion mantenha a sua configuração, é necessário que o eletrófilo reaja com o carbânion antes da expulsão total de CO2, isto é, na fase em que ele se encontra ligado ao oxigênio sulfonílico (II). Este é o caso da descarboxilação protonativa, que mostrou ocorrer com retenção da configuração na experiência por nós realizada. A racemização que ocorre no caso da descarboxilação alquilativa foi atribuída à pequena janela de reação, que impede a aproximação do reagente alquilante. Foi por nós sugerido que a ligação do CO2 ao oxigênio sulfonílico seria responsável pela barreira rotacional que mantém a assimetria do α-sulfonil carbânion, tornando-o conformacionalmente estável. No decorrer do presente estudo foram sintetizados 11 compostos ainda não descritos na literatura, entre eles: três α-bromo tioésteres, cinco α-sulfonil tioésteres, quatro α-sulfonil tioésteres α-sulfenilados e uma sulfona tetrassubstituída. / This thesis gives a contribution to the chemistry of α-sulfonyl carbanions, such as the comprehension of its conformational stability and reactivity towards electrophilic reagents. The investigated reactions were alkylation and sulfenylation of α-sulfonyl thioesters and the decarboxylative alkylation of racemic and optically active α-phenylsulfonyl-α-phenylpropanoic acids. The presentation of the results and the discussion of the alkylation and sulfenylation reactions are preceded by a bibliographic revision describing the most important reports in the literature concerning the reactions of α-sulfonyl carbanions with different electrophiles, such as: protonation, halogenation, alkylation, acylation, condensation and sulfenylation. Our studies of the alkylation reaction, carried out with two different α-sulfonyl thioesters, employing homogeneous media, indicated that in the case of methyl, ethyl and allyl halides, mixtures of mono- and dialkylated products were obtained. However, in the case of benzyl bromide, the corresponding monoalkylated compound was obtained as the only reaction product (see file). On the other hand, the alkylation of methyl α-phenylsulfonyl thioacetate by PTC method afforded, exclusively, the corresponding monoalkylated products. These results show the superiority of the PTC method over the homogeneous one (see file). The sulfenylation reactions carried out with methyl α-phenylsulfonyl thioacetate and their α-alkylsubstituted derivatives employing PTC conditions, afforded only monosulfenylated α-sulfonyl thioesters as the only reaction products. Also in this case, the PTC method showed to be superior to give the monosulfenylated products in higher yields (see file). A mechanism for the alkylation and sulfenylation reactions in solid / liquid PTC system, which explains the absence of the dialkylated and disulfenylated products is suggested. The presentation and discussion of the results for the alkylative decarboxylation reactions of racemic and optically active α-phenylsulfonyl-α-phenylpropanoic acids is preceded by a bibliographic introduction reporting the most important works in the literature concerning the decarboxylation of α-sulfonyl carboxylic acids in the presence of electrophiles such as hydrogen, halogens and sulfur. Specially important are the studies on the stereochemical course of the base-catalyzed protonative decarboxylation of optically active α-sulfonyl carboxylic acids, showing the high stability of the a-sulfonyl cabanion, which retains its original configuration even after protonation. There is a link between these investigations and our studies of the alkylative decarboxylation of racemic and optically active α-phenylsulfonyl-α-phenylpropanoic acids, which are undertook in continuation to our investigations on the alkylative decarboxylation of α-phenylsulfonyl-α- phenyl carboxylic acids. Our results showed that it is possible to obtain the tetrasubstituted sulfone from the reaction of α-phenylsulfonyl-α-phenylpropanoic acid with ethyl iodide, in the presence of NaH / DMSO as base, provided that the CO2, which is formed during the reaction, is expelled (see file). The synthesis of the optically active α-phenylsulfonyl-α-phenylpropanoic acid containing several reaction steps is presented, through the resolution of the α-phenylsulfenyl-α-phenylpropanoic acid, followed by its oxidation. The configurations of both acids were determined through X-rays analyses, and showed to be S. However, it was not possible to obtain the optically active tetrasubstituted sulfone from the reaction of optically active α-phenylsulfonyl-α-phenylpropanoic acid with ethyl iodide in the experimental conditions employed for the corresponding racemic acid. The insight for the decarboxylation process of the α-sulfonyl carboxylic acids was obtained from semi-empiric calculations that showed the existence of two intermediate steps in the decarboxylation of the corresponding carboxylates, one of which with CO2 bonded to the carbanion and another one, of lower energy, in which the CO2 is linked to the sulfonyl oxygen (see file). Proofs were provided, through the comparative experiments of alkylation and protonation for the optically active α-sulfonyl acid, that for retention of configuration of the α-sulfonyl carbanion it is necessary that the reaction of the carbanion with the electrophile takes place before the total expulsion of CO2, i.e., when it is linked to SO2. It was suggested that the CO2-OSO linkage could be responsible for the rotational barrier, which maintains the symmetry of the a-sulfonyl carbanion, which becomes conformationaly stable. Finally, eleven new compounds were prepared in the course of the present study such as: three α-bromo thioesters, five α-sulfonyl thioesters, four α-sulfenylated α-sulfonyl thioesters and one α-tetrasubstituted sulfone.
54

Reações de α-sulfonil carbânions: alquilação e sulfenilação de alguns α-sulfonil tioésteres. Descarboxilação alquilativa dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo / Α-sulfonyl carbanions reactions: alkylation and sulfenylation of some α-sulfonyl thioesters. Alquilativa decarboxylation of α-phenylsulfonyl-α-phenylpropanoic racemic acids and optically active

Regina Maria de Almeida Neves 27 October 2000 (has links)
A presente tese trata de α-sulfonil carbânions, trazendo uma contribuição para a compreensão da sua estabilidade conformacional e reatividade frente a reagentes eletrofílicos. As reações investigadas foram as alquilações e sulfenilações de α-sulfonil tioésteres e as descarboxilações alquilativas dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo. A apresentação e discussão dos resultados das reações de alquilação e sulfenilação é precedida por uma revisão bibliográfica que apresenta os trabalhos mais relevantes da literatura sobre as reações de α-sulfonil carbânions com diversos eletrófilos, envolvendo reações tais como: halogenação, alquilação, acilação, condensação e sulfenilação. Os estudos das reações de alquilação, por nós efetuados com dois diferentes α-sulfonil tioésteres, empregando o método em fase homogênea, indicaram que, no caso dos haletos de metila, etila e alila, foram obtidas misturas dos produtos mono- e di- alquilados, enquanto que no caso do brometo de benzila houve formação exclusiva de produtos monoalquilados (ver arquivo). Entretanto, a alquilação pelo emprego do método de catálise de transferência de fase (CTF), efetuada com o α-fenilsulfonil tioacetato de metila, conduziu exclusivamente aos produtos monoalquilados correspondentes, independentemente do reagente alquilante empregado (ver arquivo). Estes resultados mostraram a superioridade do método em transferência de fase sobre o em fase homogênea. Os estudos das reações de sulfenilação, efetuados com o α-fenilsulfonil tioacetato de metila e os seus derivados α-alquilsubstituídos, empregando o método CTF, conduziram exclusivamente aos produtos monossulfenilados (ver arquivo). Neste caso, o método em transferência de fase também se mostrou superior ao em fase homogênea, sendo os produtos monossulfenilados obtidos em maior rendimento. É sugerido um mecanismo para as reações de alquilação e sulfenilação de α-sulfonil tioésteres em CTF, empregando sistema sólido / líquido, o qual explica a ausência, nestas condições reacionais, dos produtos dialquilado e dissulfenilado. A apresentação e discussão dos resultados das reações de descarboxilação alquilativas dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo é precedida por uma introdução que apresenta os estudos mais relevantes da literatura sobre as reações de descarboxilação de ácidos α-sulfonil carboxílicos na presença de eletrófilos, tais como hidrogênio, halogênio, carbono e enxofre. São de especial interesse os estudos envolvendo o curso estereoquímico da reação de descarboxilação protonativa de ácidos α-sulfonil carboxílicos opticamente ativos em meio alcalino, demonstrando a grande estabilidade do α-sulfonil carbânion, que retém a sua configuração original, sendo esta mantida mesmo após a protonação. Estas investigações se relacionam com os nossos estudos de descarboxilação alquilativa dos ácidos α-fenilsulfonil-α-fenilpropanóicos racêmico e opticamente ativo, efetuados em continuação aos estudos anteriores de descarboxilações alquilativas dos ácidos α-fenilsulfonil-α-fenil carboxílicos realizados no nosso laboratório. Os nossos resultados mostraram que é possível obter a sulfona tetrassubstituída pela reação do ácido α-fenilsulfonil-α-fenilpropanóico com iodeto de etila na presença de NaH / DMSO, desde que se expulse o CO2 formado na reação (ver arquivo). É apresentada a síntese do ácido α-fenilsulfonil-α-fenilpropanóico opticamente ativo, o qual foi obtido por vários passos reacionais, através da resolução do ácido α-fenilsulfenil-α-fenilpropanóico e a sua posterior oxidação. A configuração de ambos os compostos foi determinada pela análise de raios X, mostrando ser o isômero S. As sínteses destes ácidos foram efetuadas por dois métodos distintos, constituídos de 3 e 5 passos reacionais. Entretanto, não foi possível obter a sulfona tetrassubstituída opticamente ativa pela reação do ácido α-fenilsulfonil-α-fenilpropanóico opticamente ativo com iodeto de etila nas mesmas condições empregadas no caso do composto racêmico correspondente. Foi obtido um esclarecimento do processo da descarboxilação de ácidos α-sulfonil carboxílicos a partir de cálculos semi-empíricos que mostraram a existência de duas etapas intermediárias na descarboxilação dos respectivos carboxilatos, ou seja, uma em que o CO2 se liga ao carbânion (I) e outra, de mais baixa energia, em que ele se liga ao oxigênio sulfonílico (II) (ver arquivo). Foram fornecidas provas, através de experiências comparativas de alquilação e protonação, que para que o α-sulfonil carbânion mantenha a sua configuração, é necessário que o eletrófilo reaja com o carbânion antes da expulsão total de CO2, isto é, na fase em que ele se encontra ligado ao oxigênio sulfonílico (II). Este é o caso da descarboxilação protonativa, que mostrou ocorrer com retenção da configuração na experiência por nós realizada. A racemização que ocorre no caso da descarboxilação alquilativa foi atribuída à pequena janela de reação, que impede a aproximação do reagente alquilante. Foi por nós sugerido que a ligação do CO2 ao oxigênio sulfonílico seria responsável pela barreira rotacional que mantém a assimetria do α-sulfonil carbânion, tornando-o conformacionalmente estável. No decorrer do presente estudo foram sintetizados 11 compostos ainda não descritos na literatura, entre eles: três α-bromo tioésteres, cinco α-sulfonil tioésteres, quatro α-sulfonil tioésteres α-sulfenilados e uma sulfona tetrassubstituída. / This thesis gives a contribution to the chemistry of α-sulfonyl carbanions, such as the comprehension of its conformational stability and reactivity towards electrophilic reagents. The investigated reactions were alkylation and sulfenylation of α-sulfonyl thioesters and the decarboxylative alkylation of racemic and optically active α-phenylsulfonyl-α-phenylpropanoic acids. The presentation of the results and the discussion of the alkylation and sulfenylation reactions are preceded by a bibliographic revision describing the most important reports in the literature concerning the reactions of α-sulfonyl carbanions with different electrophiles, such as: protonation, halogenation, alkylation, acylation, condensation and sulfenylation. Our studies of the alkylation reaction, carried out with two different α-sulfonyl thioesters, employing homogeneous media, indicated that in the case of methyl, ethyl and allyl halides, mixtures of mono- and dialkylated products were obtained. However, in the case of benzyl bromide, the corresponding monoalkylated compound was obtained as the only reaction product (see file). On the other hand, the alkylation of methyl α-phenylsulfonyl thioacetate by PTC method afforded, exclusively, the corresponding monoalkylated products. These results show the superiority of the PTC method over the homogeneous one (see file). The sulfenylation reactions carried out with methyl α-phenylsulfonyl thioacetate and their α-alkylsubstituted derivatives employing PTC conditions, afforded only monosulfenylated α-sulfonyl thioesters as the only reaction products. Also in this case, the PTC method showed to be superior to give the monosulfenylated products in higher yields (see file). A mechanism for the alkylation and sulfenylation reactions in solid / liquid PTC system, which explains the absence of the dialkylated and disulfenylated products is suggested. The presentation and discussion of the results for the alkylative decarboxylation reactions of racemic and optically active α-phenylsulfonyl-α-phenylpropanoic acids is preceded by a bibliographic introduction reporting the most important works in the literature concerning the decarboxylation of α-sulfonyl carboxylic acids in the presence of electrophiles such as hydrogen, halogens and sulfur. Specially important are the studies on the stereochemical course of the base-catalyzed protonative decarboxylation of optically active α-sulfonyl carboxylic acids, showing the high stability of the a-sulfonyl cabanion, which retains its original configuration even after protonation. There is a link between these investigations and our studies of the alkylative decarboxylation of racemic and optically active α-phenylsulfonyl-α-phenylpropanoic acids, which are undertook in continuation to our investigations on the alkylative decarboxylation of α-phenylsulfonyl-α- phenyl carboxylic acids. Our results showed that it is possible to obtain the tetrasubstituted sulfone from the reaction of α-phenylsulfonyl-α-phenylpropanoic acid with ethyl iodide, in the presence of NaH / DMSO as base, provided that the CO2, which is formed during the reaction, is expelled (see file). The synthesis of the optically active α-phenylsulfonyl-α-phenylpropanoic acid containing several reaction steps is presented, through the resolution of the α-phenylsulfenyl-α-phenylpropanoic acid, followed by its oxidation. The configurations of both acids were determined through X-rays analyses, and showed to be S. However, it was not possible to obtain the optically active tetrasubstituted sulfone from the reaction of optically active α-phenylsulfonyl-α-phenylpropanoic acid with ethyl iodide in the experimental conditions employed for the corresponding racemic acid. The insight for the decarboxylation process of the α-sulfonyl carboxylic acids was obtained from semi-empiric calculations that showed the existence of two intermediate steps in the decarboxylation of the corresponding carboxylates, one of which with CO2 bonded to the carbanion and another one, of lower energy, in which the CO2 is linked to the sulfonyl oxygen (see file). Proofs were provided, through the comparative experiments of alkylation and protonation for the optically active α-sulfonyl acid, that for retention of configuration of the α-sulfonyl carbanion it is necessary that the reaction of the carbanion with the electrophile takes place before the total expulsion of CO2, i.e., when it is linked to SO2. It was suggested that the CO2-OSO linkage could be responsible for the rotational barrier, which maintains the symmetry of the a-sulfonyl carbanion, which becomes conformationaly stable. Finally, eleven new compounds were prepared in the course of the present study such as: three α-bromo thioesters, five α-sulfonyl thioesters, four α-sulfenylated α-sulfonyl thioesters and one α-tetrasubstituted sulfone.
55

Eco-compatible syntheses of bio-based solvents for the paint and coating industry / Synthèses eco-compatibles des solvants bio-sourcés pour l’industrie des peintures et revêtements

Guzman Barrera, Nydia Ileana 14 June 2018 (has links)
La production mondiale de solvants représente environ 28 millions de tonnes, dont 5 millions en Europe. L’industrie des peintures et des revêtements en est la principale consommatrice (46 % des solvants produits). Dans ce domaine, les solvants les plus utilisés sont l'acétate d'éthyle, l'acétate de butyle et la méthyl éthyl cétone. Ces molécules sont actuellement synthétisées industriellement à partir de substrats d’origine pétrochimique en présence de catalyseurs homogènes et dans des conditions énergivores. Afin de réduire l’impact environnemental des peintures et revêtements, la substitution de ces solvants issus du pétrole par leurs équivalents bio sourcés a été étudiée dans le cadre du projet européen ECOBIOFOR (FP7/2007-2013/Grant Agreement no 605215), dans lequel se sont inscrits ces travaux de thèse. Ainsi, l’objectif de cette thèse a été de développer, à partir de synthons renouvelables, des procédés de production de ces trois solvants simples à mettre en oeuvre, peu coûteux et respectueux des principes de la chimie verte. Pour la production des acétates d’éthyle et de butyle, deux voies de synthèse ont été étudiées en présence d’une résine échangeuse d'ions comme catalyseur hétérogène. La première voie utilise de l'acide acétique et l’alcool biosourcé correspondant (éthanol ou le butan-1-ol); la seconde met en jeu l’anhydride acétique à la place de l’acide acétique. Dans ces synthèses, quatre résines ont été testées. Des études cinétiques et thermodynamiques ont permis de choisir la résine la plus performante et les conditions de réaction les plus adaptées. Cette étude a finalement permis de proposer un procédé de coproduction des deux acétates efficace et innovant dans lequel la purification des acétates est facilitée, la production de déchets et coproduits est réduite et le recyclage de la résine est possible. L'évaluation des performances des acétates synthétisés dans des formulations de laques nitrocellulosiques et de vernis polyuréthanes a permis de montrer que ces molécules répondent au cahier des charges en terme de séchage, viscosité, formation de film, brillance et adhérence. Enfin, le bénéfice environnemental du processus de coproduction a été mis en évidence par le calcul des métriques de la chimie verte et l'analyse du cycle de vie des esters produits. De plus, l'influence de l'origine des alcools, biosourcés ou pétrochimiques, sur l’impact environnemental a été évaluée. L’impact sur le changement climatique est réduit avec l’utilisation des synthons bio-sourcés. Pour la synthèse de la méthyl éthyl cétone, nous avons décidé d’étudier la réaction de décarboxylation de l’acide lévulinique, molécule plateforme biosourcée disponible et peu coûteuse. Contrairement au principal procédé industriel qui repose sur la déshydrogénation du butan-2-ol d'origine fossile, la méthode développée dans ces travaux utilise des conditions plus respectueuses de l’environnement puisqu’elle est réalisée dans l’eau en présence de persulfate de potassium et d’un sel d'argent à une température raisonnable (100°C). L'évaluation du rôle de chacun des réactifs a permis de proposer un mécanisme réactionnel complexe de cette synthèse. L'étude de l’évolution des espèces en phase solide réalisés par diverses analyses spectroscopiques (RMN du solide, DRX, XPS, AES et MEB) a permis de mettre en évidence les espèces impliquées dans la décarboxylation et finalement de proposer une méthode permettant d’obtenir des conversions et des rendements élevés. / Global solvent production accounts for about 28 million tonnes, including 5 million tonnes in Europe. The paint and coating industry is the main consumer (46% of the solvents produced). In this sector, the most used solvents are ethyl acetate, butyl acetate and methyl ethyl ketone. These molecules are currently synthesized industrially from petrochemical substrates in the presence of homogeneous catalysts and under energy-consuming conditions. In order to reduce the environmental impact of paints and coatings, the substitution of these fossil-based solvents by their bio-based equivalents has been studied in the framework of the European project ECOBIOFOR (FP7/2007-2013/Grant Agreement no 605215), in which this thesis work was inscribed. Thus, the objective of this thesis was to develop production processes for these three solvents that would start from renewable synthons and would be simple to implement, inexpensive and respectful of the principles of green chemistry. For the production of ethyl and butyl acetates, two synthetic routes have been studied in the presence of an ion exchange resin as a heterogeneous catalyst. The first route uses acetic acid and the corresponding bio-based alcohol (ethanol or butan-1-ol); the second involves acetic anhydride instead of acetic acid. Kinetic and thermodynamic studies have led to select the most efficient resin and the most suitable reaction conditions. This study has finally allowed to propose an efficient and innovative coproduction process for the two targeted acetates in which their purification is facilitated, the production of waste and co-products is reduced and the recycling of the resin is possible. The evaluation of the performance of the synthesized acetates in nitrocellulose lacquer and polyurethane varnish formulations has shown that these molecules meet the specifications in terms of drying, viscosity, film formation, gloss and adhesion. Finally, the environmental benefit of the co-production process was highlighted by the calculation of green metrics and the life cycle assessment (LCA) of the produced esters. Furthermore, the influence of the origin of alcohols (bio-based or petrochemical) on the environmental impact was evaluated. The impact on climate change is reduced through the use of bio-sourced synthons. For the synthesis of methyl ethyl ketone, we decided to study the decarboxylation reaction of levulinic acid, which is a bio-based platform molecule available and inexpensive. Unlike the main industrial process, which relies on the dehydrogenation of butan-2-ol from fossil origin, the method developed in this work uses conditions that are more respectful of the environment since the reaction is carried out in water in the presence of potassium persulfate and a silver salt at a moderate temperature (100°C). The evaluation of the role of each of the reagents allowed us to propose a complex reaction mechanism for this reaction. The study of the evolution of the solid phase species carried out through various spectroscopic analyzes (SSNMR, XRD, XPS, AES and SEM) made it possible to highlight the species involved in the decarboxylation and finally to propose a method to obtain high conversions and yields.
56

Transformations of Energy-Related Small Molecules at Dinuclear Complexes

Lücken, Jana 02 November 2021 (has links)
No description available.
57

Kinetics of the Hydro-Deoxygenation of Stearic Acid over Palladium on Carbon Catalyst in Fixed-Bed Reactor for the Production of Renewable Diesel

Vam, Albert 30 August 2013 (has links)
No description available.
58

Biochemical and structural studies of 4-hydroxyphenylacetate decarboxylase and its activating enzyme

Selvaraj, Brinda 13 October 2014 (has links)
Strikt anaerobe Bakterien wie Clostridium difficile und C. scatologenes verwenden GRE, um die chemisch ungünstige Decarboxylierung von 4-Hydroxyphenylacetat zu p-Cresol zu katalysieren. Das Enzymsystem besteht aus einer Decarboxylase und dem zugehörigen Aktivierungsenzym. Die 4-Hydroxyphenylacetat-Decarboxylase (4Hpad) besitzt zusätzlich zum Protein-basierten Glycinradikal eine weitere Untereinheit mit bis zu zwei [4Fe-4S] Clustern und repräsentiert hierdurch eine neue Klasse von Fe/S-Cluster-haltigen GREs, die aromatische Verbindungen umsetzen. Das Aktivierungsenzym (4Hpad-AE) weicht vom Standardtypus ab, indem es zusätzlich zum S-Adenosylmethionin(SAM)-bindenden [4Fe-4S]-Cluster (RS-Cluster) mindestens einen weiteren [4Fe-4S]-Cluster bindet. In dieser Studie wurden heterologe Expressions- und Reinigungsprotokolle für 4Hpad und 4Hpad-AE entwickelt. Kristallstrukturen von 4Hpad cokristallisiert mit den Substraten (4-Hydroxyphenylacetat, 3,4-Dihydroxyphenylacetat) und dem Inhibitor (4-Hydroxyphenylacetamid) zeigten geringe strukturelle Änderungen im aktiven Zentrum des Proteins. Die Radikalbildung am 4Hpad-AE wurde durch die Überprüfung einer klassischen reduktiven Spaltung von SAM zu den Reaktionsprodukten 5’-Deoxyadenosin und Methionin bestätigt. EPR- und Mössbauer-Spektroskopische Analysen zeigten, dass 4Hpad-AE mindestens einen zusätzlichen [4Fe-4S] Cluster neben dem einzelnen RS-Cluster enthält. Die katalytische Notwendigkeit eines zusätzlichen Clusters wurde durch eine Mutationsanalyse untersucht, wobei eine verkürzte Version des Enzyms ohne die zusätzliche Cystein-reiche Insertion konstruiert wurde. Das verkürzte Mutante ohne die Bindungsmotive für die zusätzlichen Cluster gekennzeichnet, die Konfiguration, Stöchiometrie und die Funktion der zusätzlichen Cluster diagnostizieren. / 4-hydroxyphenylacetate decarboxylase (4Hpad) is a two [4Fe-4S] cluster containing glycyl radical enzyme proposed to use a glycyl/thiyl radical dyad to catalyze the last step of tyrosine fermentation in Clostridium difficile and C. scatologenes by a Kolbe-type decarboxylation. The decarboxylation product p-cresol is a virulence factor of the human pathogen C. difficile. The small subunit of 4Hpad may have a regulatory function with the Fe/S clusters involved in complex formation and radical dissipation in the absence of substrate. The respective activating enzyme (4Hpad-AE) has one or two [4Fe-4S] cluster(s) in addition to the SAM-binding [4Fe-4S] cluster (RS cluster). The role of these auxiliary clusters is still under debate with proposed functions including structural integrity and conduit for electron transfer to the RS cluster. This study shows the optimized expression and purification protocols for the decarboxylase and the co-crystallization experiments and binding studies with 4-hydroxy-phenylacetate and 3,4-dihydroxyphenylacetate and with the inhibitor 4-hydroxy-phenylacetamide. The purification and characterization of active site mutants of decarboxylase are also done. Concerning 4-HPAD-AE, we report on the purification of code-optimized variants, and on spectroscopic and kinetic studies to characterize the respective i) SAM binding enthalpies, ii) rates for reductive cleavage of SAM and iii) putative functions of the additional Fe/S clusters. The truncated mutant lacking the binding motifs for the auxiliary clusters is characterized to diagnose the configuration, stoichiometry and function of the auxiliary clusters.

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