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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.
41

Investigation of Polymer Based Materials in Thermoelectric Applications

Luo, Jinji 25 June 2015 (has links) (PDF)
With the advancements in the field of wireless sensor networks (WSNs), more and more applications require the sensor nodes to have long lifetime. Energy harvesting sources, e.g. thermoelectric generators (TEGs), can be used to increase the lifetime and capability of the WSNs. Integration of energy harvesters into sensor nodes of WSNs can realize self powered systems, providing the possibility for maintenance free WSNs. TEGs can convert the existing temperature differences into electricity. The efficiency of TEGs is directly related to the dimensionless figure of merit (ZT) of materials, which is given as ZT=σS^2 T/k, where σ is the electrical conductivity, S is the Seebeck coefficient, k is the thermal conductivity, T is the temperature and σS^2 is the power factor. Traditional thermoelectric (TE) materials are based on inorganic materials, of which the thermal conductivity is high. Over the past decade, the use of nanostructuring technology, e.g. superlattice, could decrease the thermal conductivity in order to enhance the efficiency of TE materials. However, the high cost and the rigidity of inorganic TE materials are limiting factors. As alternatives, polymer based materials have become the research focus due to their intrinsic low thermal conductivity, high flexibility and high electrical conductivity. Moreover, polymer based materials could be fabricated in solution form, giving the possibility for employing printing techniques hence a decrease in the production cost. Unlike the typical approach, in which secondary dopants are added into PEDOT:PSS solutions to modify the power factor of polymer films, this thesis is focused on a more efficient method to improve TE properties. This thesis demonstrates for the first time that post treatment of PEDOT:PSS films with the secondary dopant DMSO as the medium results in a much larger power factor than the traditional addition method. The post treatment method also avoids the usually required mixing step involved in the addition method. Different solvents were selected to discuss the impact factors in the modification of the power factor by this post treatment approach. The post treatment of PEDOT:PSS films was then extended to utilize a green solvent EMIMBF_4 (an ionic liquid) as the medium. EMIMBF_4 is found to exchange ions with PEDOT:PSS films. As a result, the EMIM^+ cations remain in the films and reduce the oxidation level of PEDOT chains, which affects the Seebeck coefficient and the electrical conductivity. Furthermore, TE materials based on hybrid composites with polymer as the matrix and Te nanostructures as the nanoinclusions were investigated. This thesis successfully developed a green synthesis method to obtain Te nanostructures, in which a non toxic reductant and a non toxic Te sources were used. Well controlled Te nanostructures including nanorods, nanowires and nanotubes were synthesized by wet chemical and hydrothermal synthesis. Those as synthesized Te nanowires were then integrated into PEDOT:PSS solution for composite films fabrication. A high Seebeck coefficient up to 200 μV/K was observed in the composite film. / Mit den Weiterentwicklungen der Drahtlosen Sensornetzwerke (engl. WSN, wireless sensor networks) stellen immer mehr Anwendungen die Forderung einer langen Lebensdauer der Sensorknoten. Energiegewinnungssysteme (engl. Energy Harvesters) wie z.B. thermoelektrische Generatoren (TEGs) können genutzt werden, um die Lebensdauer und Leistungsfähigkeit der WSN zu steigern. Mit der Integration von Energy Harvesters können WSN ohne äußere Stromversorgung realisiert und somit die Möglichkeit zur Wartungsfreiheit geschaffen werden. TEGs liefern Energie durch die Umwandlung einer Temperaturdifferenz in Elektrizität. Die Effektivität der TEG ist direkt verbunden mit der Material-Kennzahl ZT und ist gegeben durch ZT=σS^2 T/k, wobei σ die elektrische Leitfähigkeit ist, S der Seebeck Koeffizient, k die thermische Leifähigkeit, T die Temperatur und σS^2 der Leistungsfaktor. Herkömmliche thermoelektrische (TE) Materialien basieren auf anorganischen Materialien, von denen die thermische Leitfähigkeit hoch ist. Im Laufe des letzten Jahrzehnts konnte durch den Einsatz der Nanostrukturierung die thermische Leitfähigkeit verringern werden um damit die Effizienz von TE-Materialien zu steigern. Die Steifigkeit dieser Materialien ist ein anderer Aspekt. Als Alternative für anorganische TE Materialien sind Polymer basierte TE Materialien zum Fokus der Forschung geworden aufgrund einer intrinsisch niedrigen thermischen Leitfähigkeit, hohen Flexibilität und hohen elektrischen Leitfähigkeit. Des Weiteren können diese Polymere in gelöster Form verarbeitet werden, was die Möglichkeit für den Einsatz von Drucktechnologien und damit geringeren Produktionskosten gibt. Anders als der herkömmliche Ansatz den Leistungsfaktor der Polymerfilme durch die Ergänzung von sekundären Dotanten in PEDOT:PSS Lösungen zu verändern, wurde in dieser Arbeit eine effizientere Methode zur Verbesserung der TE Eigenschaften gesucht. In dieser Arbeit wird zum ersten Mal gezeigt, dass die Nachbehandlung von PEDOT:PSS Schichten mit sekundären Dotanten Dimethylsulfoxid (DMSO) als Medium der Nachbehandlung zu einem viel höheren Leistungsfaktor führt als bei der Zugabemethode und außerdem die sonst erforderliche Mischprocedur vermeidet. Es wurden verschiedene Lösungsmittel ausgewählt um die Einflussfaktoren bei der Modifikation des Leistungsfaktors durch die Nachbehandlung von Polymerschichten zu diskutieren. Die Nachbehandlung von PEDOT:PSS Schichten wurde nachfolgend erweitert um das umweltfreundliche Lösungsmittel EMIMBF4 (eine ionische Flüssigkeit) als das Medium einzusetzen. EMIMBF4 ist bekannt für den Austausch von Ionen mit PEDOT:PSS Schichten, so dass EMIM Kationen in der Schicht verbleiben, die Oxidationsstufe der PEDOT-Ketten senken und damit den Seebeck-Koeffizient und die elektrische Leitfähigkeit beeinflussen. Des Weiteren konzentriert sich diese Arbeit auf TE Materialien basierend auf Kompositen aus Polymeren mit Nanoeinlagerungen. Erfolgreiche Syntheseansätze wurden für Tellur-Nanostrukturen entwickelt, bei denen keine giftigen Reduktionsmittel und keine giftigen Tellur-Quellen zur Verwendung kamen. Es erfolgte die Erzeugung von kontrollierten Tellur-Nanostrukturen, einschließlich Nanostäben, Nanodrähten und Nanoröhren, mit nass-chemischer und hydrothermaler Synthese. Die so hergestellten Nanodrähte wurden dann in PEDOT:PSS Lösungen integriert für die Herstellung von Komposite-Schichten. Dabei konnte ein hoher Seebeck-Koeffizienten, bis zu 200 μV/K, festgestellt werden.
42

Controle feedback de n?vel baseado em sensor de imagem aplicado ao equipamento misturador-decantador ? invers?o de fases (MDIF?) / Level feedback control using an image-based detector applied to a mixer-settler based on phase inversion equipment (MDIF?).

Fernandes, Lenita da Silva Lucio 03 September 2009 (has links)
Made available in DSpace on 2014-12-17T15:01:20Z (GMT). No. of bitstreams: 1 LenitaSLF.pdf: 2627101 bytes, checksum: 55e09659bccdbe036d1c49a7fea4b6ca (MD5) Previous issue date: 2009-09-03 / Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico / The treatment of wastewaters contaminated with oil is of great practical interest and it is fundamental in environmental issues. A relevant process, which has been studied on continuous treatment of contaminated water with oil, is the equipment denominated MDIF? (a mixer-settler based on phase inversion). An important variable during the operation of MDIF? is the water-solvent interface level in the separation section. The control of this level is essential both to avoid the dragging of the solvent during the water removal and improve the extraction efficiency of the oil by the solvent. The measurement of oil-water interface level (in line) is still a hard task. There are few sensors able to measure oil-water interface level in a reliable way. In the case of lab scale systems, there are no interface sensors with compatible dimensions. The objective of this work was to implement a level control system to the organic solvent/water interface level on the equipment MDIF?. The detection of the interface level is based on the acquisition and treatment of images obtained dynamically through a standard camera (webcam). The control strategy was developed to operate in feedback mode, where the level measure obtained by image detection is compared to the desired level and an action is taken on a control valve according to an implemented PID law. A control and data acquisition program was developed in Fortran to accomplish the following tasks: image acquisition; water-solvent interface identification; to perform decisions and send control signals; and to record data in files. Some experimental runs in open-loop were carried out using the MDIF? and random pulse disturbances were applied on the input variable (water outlet flow). The responses of interface level permitted the process identification by transfer models. From these models, the parameters for a PID controller were tuned by direct synthesis and tests in closed-loop were performed. Preliminary results for the feedback loop demonstrated that the sensor and the control strategy developed in this work were suitable for the control of organic solvent-water interface level / O tratamento de ?guas residuais contaminadas com ?leo ? um assunto de grande interesse pr?tico, principalmente no que se refere ?s quest?es ambientais. Um processo bastante relevante que vem sendo estudado no tratamento semi-cont?nuo de ?guas contaminadas com ?leo ? o Misturador-Decantador ? Invers?o de Fases (MDIF?). Uma vari?vel importante na opera??o do sistema MDIF? ? o n?vel da interface solvente org?nico/?gua na se??o de separa??o. O controle deste n?vel ? essencial tanto para evitar o arraste de solvente pela ?gua como para melhorar a efici?ncia de remo??o do ?leo pelo solvente. A despeito disso, a medida (em linha) da interface de separa??o ainda constitui uma tarefa dif?cil e s?o poucos os sensores capazes de medir tal interface. No caso de sistemas em escala de bancada, n?o h? sensores de interface com dimens?es compat?veis. O presente trabalho teve como objetivo implementar um sistema de controle de n?vel para a interface de separa??o (solvente org?nico/?gua) no equipamento MDIF?. A medida de n?vel da interface ? baseada na aquisi??o e tratamento de imagens obtidas dinamicamente por uma c?mera (webcam). A estrat?gia de controle foi desen olvida para operar em modo feedback, onde a medida de n?vel obtida pelo sensor de imagem ? comparada ao n?vel desejado e a a??o de controle ? tomada sobre uma v?lvula, seguindo uma lei do tipo PID. Um programa de aquisi??o de dados e controle foi desenvolvido em Fortran para realizar as seguintes tarefas: aquisi??o de imagem, identifica??o da interface solvente org?nico/?gua, tomada de decis?es, envio dos sinais de controle e registro de dados em arquivo. Alguns experimentos em malha aberta foram realizados, onde perturba??es aleat?rias tipo pulso foram aplicadas na vari?vel de entrada (vaz?o de sa?da de ?gua). As respostas do n?vel de interface permitiram a identifica??o do processo atrav?s de modelos de fun??o de transfer?ncia. A partir destes modelos, os par?metros para o controlador PID foram sintonizados por s?ntese direta e testes em malha fechada foram realizados. Os resultados preliminares da malha feedback demonstraram que o sensor e a estrat?gia de controle desenvolvidos neste trabalho foram satisfat?rios para controlar o n?vel da interface solvente org?nico/?gua
43

Produção de ácidos graxos voláteis por fermentação acidogênica em reator anaeróbio de leito fixo e extração em resina de troca iônica e com solvente orgânico / Volatile fatty acids production by acidogenic fermentation in an anaerobic immobilized biomass reactor and extraction with ionic change resin and organic solvent

José Alberto Corrêa Leite 01 April 2005 (has links)
Nesse trabalho utilizou-se o reator anaeróbio horizontal de leito fixo (RAHLF) para produção de ácidos graxos voláteis (AGVs). O reator, com volume total de 2,38 litros, foi preenchido com partículas de argila expandida e alimentado com substrato sintético à base de glicose. Com concentração de glicose de 2000 mg/L, sem adição de alcalinizante e com tempo de detenção hidráulica (TDH) de 2 horas, houve produção de ácidos acético, butírico e propiônico. Com a variação do (TDH) de 2 horas para 0,5 hora, em condições idênticas, houve redução da produção do ácido butírico. Na segunda condição testada, em que a concentração da glicose foi 4000 mg/L, a concentração dos três ácidos aumentou, além de ser produzido o ácido capróico. Nas três últimas experimentações, com a glicose a 2000 mg/L e alcalinizada com bicarbonato de sódio, nas concentrações de 0,1000 e 2000 mg/L e TDH em 0,5 hora, as produções do ácido acético e propiônico aumentaram, enquanto que houve diminuição da produção dos ácidos butírico e capróico. A extração dos AGVs foi realizada em coluna de 320 mL de leito, com resina de troca iônica Dowex Marathon A - tipo aniônica base forte de amina quaternária em gel de divinil benzeno-estireno como matriz. O primeiro sistema extratante testado, foi com a resina condicionada na forma \'CL POT. -\' e a eluição foi feita com solução de \'NA\'\'CL\' em várias concentrações. Os percolados apresentaram alto teor de cloreto, inconveniente para as recuperações dos AGVs ou para o seu descarte no ambiente. O sistema testado com a resina condicionada na forma \'OH POT.-\' e a eluição com solução de \'NA\'\'OH\', em pH 13,5, demonstrou ser viável para a extração e concentração dos AGVs, com os fatores de concentração acima de 25, além de 80% do volume do percolado da fixação ser adequado para a devolução ao ambiente. No último teste o sistema utilizado foi o mesmo, com a alimentação apresentando a relação AVTs : sulfato de 1:1,27 e procurou-se fixar a máxima quantidade de AVTs. A eluição foi com solução de \'NA\'\'OH\' em três diferentes valores de pH: 12, 12,5 e 13. A presença do sulfato, nessa relação, dificultou a fixação dos AVs e, na eluição, competiu com os AVs, resultando em baixos fatores de concentração entre 2 e 3. Um volume de 47% do percolado da fixação e outro, de 29% da eluição, apresentou qualidade para o descarte. Na extração com solvente foram testados dois extratantes, a Alamina 336 (tri-octil/decil amina) e a Alamina 304-1 (tri-n-dodecilamina). O melhor sistema extratante, de solução de AVs impurificada com alto teor de sulfato, foi com a Alamina 336 condicionada com ácido nítrico. Entretanto, o consumo do ácido é alto o suficiente para inviabilizar economicamente a extração. Extração em sistema com baixo teor em sulfato e pH igual a 4,0 demonstrou ser técnicamente viável. Todavia, os valores da DQO residual nos refinados aquosos de todos os sistemas impossibilitam a devolução direta ao ambiente. / This work used the horizontal-flow anaerobic immobilized biomass (HAIB) reactor in order to produce volatile fatty acids (VFAs). The reactor, filled up with expanded clay particles, had a total volume of 2,38 liters and was fed with glucose based synthetic substrate. Production of acetic, butyric, and propionic acids occurred at an influent glucose concentration of 2000 mg/L without any addition of buffer agent and at a hydraulic retention time (HRT) of 2 hours. A reduction in butyric acid production occurred with the decrease of the HRT from 2 to 0,5 hours, with the reactor operating in identical conditions. In a second test condition, where the influent glucose concentration was increased to 4000 mg/L, the production of the three acids increased, beside the production of caproic acid. In the last three experiments, with influent glucose concentration at 2000 mg/L and buffered with sodium bicarbonate at concentrations of 0,1000 e 2000 mg/L and HRT of 0,5 hours, the production of acetic and propionic acids increased, whereas the production of butyric and caproic acids decreased. VFA extraction was accomplished in a 320 mL bed containing the ionic exchange resin Dowex Marathon A - strong base anionic type of quaternary amine in gel of benzene-styrene divinyl as matrix. The first extractant system was tested with the resin conditioned as \'C L POT.-\' and the elution was done with a solution of \'NA\'\'CL\' at different concentrations. The percolates presented high chloride concentration, which is inconvenient for the recovery of VFA or their release to the environment. On the other hand, the system with resin conditioned as \'OH POT.-\' and the elution with a solution of \'NA\'\'OH\' at pH 13,5 showed to be a viable option for the extraction and concentration of VFA with concentration factors above 25. In addition, the 80% of the volume of the fixation percolate is suitable for the devolution into the environment. The same system was used in the last test, however with the feeding at total volatile acids (TVA): sulfate ratios of 1:1,27 trying to fix the maximal amount of TVAs. The elution was done with \'NA\'\'OH\' at three different pH values: 12, 12,5 and 13. The presence of sulfate at this ration hampered the fixation of the volatile acids (VA) and during the elution competed with the VA, resulting in low concentration factors between 2 and 3. The volume of 47% of the fixation percolate and the volume of 29% of the elution presented good quality for discharge. Two extractants were tested in the extraction tests with solvents: Alamine 336 (tri-octyl/decyl amine) and the Alamine 304-1 (tri-n-dodecylamine). The best extractant system for the VA contaminated with high concentrations of sulfate was the Alamine 336 conditioned with nitric acid. The consumption of acid, however, was high enough to make the extraction economically unfeasible. On the other hand, extractions in systems with low sulfate concentrations and pH of 4 showed to be technically feasible, even though the residual chemical oxygen demand (COD) in the aqueous refined of all systems was too high for their direct devolution to the environment.
44

Synthèse de dérivés fonctionnels de petits peptides par voie enzymatique / Synthesis of functional derivative peptides by enzymatic way

Husson, Éric 06 November 2008 (has links)
Ce travail a consisté à étudier la N et/ou O acylation enzymatique d’alcool aminés et de dipeptides.Une étude préliminaire consacrée à l’acylation enzymatique d’une molécule modèle, le 6-amino-1-hexanol a démontré la capacité de la lipase B de Candida antarctica immobilisée à catalyser l’acylation de ce substrat dans différents milieux réactionnels. La mise en œuvre de cette réaction en solvants organiques (hexane, 2-méthyl-2-butanol) a conduit à la formation du produit diacylé avec un rendement de 85 % montrant l’absence de chimio-sélectivité de la réaction. L’utilisation de système sans solvant à base d’acide gras libre et de CO2 supercritique a permis d’orienter la chimio-sélectivité de la réaction en faveur de la O-acylation. Les liquides ioniques à cation de type imidazolium et à anions faiblement nucléophiles ont conduit à un taux de conversion de l’alcool aminé de l’ordre de 99 % tout en conservant l’absence de chimio-sélectivité observée en solvant organique. L’étude s’est ensuite focalisée sur l’acylation de dipeptides modèles tels que la Lys-Ser,HCl et la Ser-Leu. L’étude de l’acylation catalysée par la lipase B de Candida antarctica immobilisée de la Lys-Ser,HCl a montré une sélectivité exclusive en faveur de l’acylation de la fonction amine en position e, indépendamment du milieu réactionnel. La O-acylation de la Ser-Leu a permis de mettre en évidence l’influence du groupe carboxylique Cterminal électro-attracteur de Lys-Ser sur la réactivité de la fonction hydroxyle de la sérine. Enfin, la N-acylation enzymatique d’un dipeptide naturel bioactif, la carnosine a été réalisée d’une part en solvant organique, catalysée par la lipase B de Candida antarctica immobilisée et d’autre part, en milieu aqueux biphasique catalysée par l’acyl-transférase de Candida parapsilosis. L’acylation de la carnosine, conduisant à la synthèse de N-oléyl carnosine, n’affecte pas son activité inhibitrice de la xanthine oxydase et semble améliorer son activité anti-radicalaire vis-à-vis de l’anion superoxyde / The present work consisted in studying the N and/or O-enzymatic acylation of amino alcohols and dipeptides. A preliminary study was firstly undertaken about the enzymatic acylation of a bifunctionnal model molecule, 6-amino-1-hexanol and demonstrated the ability of the lipase B of Candida antarctica to catalyze the acylation of this substrate in different reaction media. The reaction performed in organic solvents (hexane, 2-methyl-2-butanol) allowed to the synthesis of the diacylated product with a substrate conversion yield of 85 %, showing the absence of chimio-selectivity of the reaction. The use of a solvent-free system constituted of free fatty acid and the use of supercritical carbon dioxide permitted to orientate the selectivity of the reaction in favour of the O-acylation. Ionic liquids with imidazolium cation and few nucleophilic anions led to a substrate conversion of 99 % and to maintain the absence of chemo-selectivity observed in organic solvents. Then, the study focused on the acylation of model dipeptides like Lys-Ser, HCl and Ser-Leu. Results relative to the acylation of Lys-Ser, HCl catalyzed by the lipase B of Candida antarctica immobilized showed a selectivity in favour of the acylation of the e-amino function independently of the reaction medium. The Ser-Leu O-acylation permitted to demonstrate the influence of the molecular environment (electro-attractor C terminal carboxylic group) on the reactivity of the serine hydroxyl function. Finally, the enzymatic acylation of a bioactive dipeptide was catalyzed by the lipase B of Candida antarctica immobilized in organic solvent and by the acyl-transferase of Candida parapsilosis in lipid-aqueous biphasic medium. The acylation of carnosine allowed the N-oleyl carnosine synthesis. The acylation of carnosine did not affect its xanthine oxydase inhibition activity and seemed to improve its superoxyde anion scavenging property
45

Investigation of Polymer Based Materials in Thermoelectric Applications

Luo, Jinji 19 May 2015 (has links)
With the advancements in the field of wireless sensor networks (WSNs), more and more applications require the sensor nodes to have long lifetime. Energy harvesting sources, e.g. thermoelectric generators (TEGs), can be used to increase the lifetime and capability of the WSNs. Integration of energy harvesters into sensor nodes of WSNs can realize self powered systems, providing the possibility for maintenance free WSNs. TEGs can convert the existing temperature differences into electricity. The efficiency of TEGs is directly related to the dimensionless figure of merit (ZT) of materials, which is given as ZT=σS^2 T/k, where σ is the electrical conductivity, S is the Seebeck coefficient, k is the thermal conductivity, T is the temperature and σS^2 is the power factor. Traditional thermoelectric (TE) materials are based on inorganic materials, of which the thermal conductivity is high. Over the past decade, the use of nanostructuring technology, e.g. superlattice, could decrease the thermal conductivity in order to enhance the efficiency of TE materials. However, the high cost and the rigidity of inorganic TE materials are limiting factors. As alternatives, polymer based materials have become the research focus due to their intrinsic low thermal conductivity, high flexibility and high electrical conductivity. Moreover, polymer based materials could be fabricated in solution form, giving the possibility for employing printing techniques hence a decrease in the production cost. Unlike the typical approach, in which secondary dopants are added into PEDOT:PSS solutions to modify the power factor of polymer films, this thesis is focused on a more efficient method to improve TE properties. This thesis demonstrates for the first time that post treatment of PEDOT:PSS films with the secondary dopant DMSO as the medium results in a much larger power factor than the traditional addition method. The post treatment method also avoids the usually required mixing step involved in the addition method. Different solvents were selected to discuss the impact factors in the modification of the power factor by this post treatment approach. The post treatment of PEDOT:PSS films was then extended to utilize a green solvent EMIMBF_4 (an ionic liquid) as the medium. EMIMBF_4 is found to exchange ions with PEDOT:PSS films. As a result, the EMIM^+ cations remain in the films and reduce the oxidation level of PEDOT chains, which affects the Seebeck coefficient and the electrical conductivity. Furthermore, TE materials based on hybrid composites with polymer as the matrix and Te nanostructures as the nanoinclusions were investigated. This thesis successfully developed a green synthesis method to obtain Te nanostructures, in which a non toxic reductant and a non toxic Te sources were used. Well controlled Te nanostructures including nanorods, nanowires and nanotubes were synthesized by wet chemical and hydrothermal synthesis. Those as synthesized Te nanowires were then integrated into PEDOT:PSS solution for composite films fabrication. A high Seebeck coefficient up to 200 μV/K was observed in the composite film. / Mit den Weiterentwicklungen der Drahtlosen Sensornetzwerke (engl. WSN, wireless sensor networks) stellen immer mehr Anwendungen die Forderung einer langen Lebensdauer der Sensorknoten. Energiegewinnungssysteme (engl. Energy Harvesters) wie z.B. thermoelektrische Generatoren (TEGs) können genutzt werden, um die Lebensdauer und Leistungsfähigkeit der WSN zu steigern. Mit der Integration von Energy Harvesters können WSN ohne äußere Stromversorgung realisiert und somit die Möglichkeit zur Wartungsfreiheit geschaffen werden. TEGs liefern Energie durch die Umwandlung einer Temperaturdifferenz in Elektrizität. Die Effektivität der TEG ist direkt verbunden mit der Material-Kennzahl ZT und ist gegeben durch ZT=σS^2 T/k, wobei σ die elektrische Leitfähigkeit ist, S der Seebeck Koeffizient, k die thermische Leifähigkeit, T die Temperatur und σS^2 der Leistungsfaktor. Herkömmliche thermoelektrische (TE) Materialien basieren auf anorganischen Materialien, von denen die thermische Leitfähigkeit hoch ist. Im Laufe des letzten Jahrzehnts konnte durch den Einsatz der Nanostrukturierung die thermische Leitfähigkeit verringern werden um damit die Effizienz von TE-Materialien zu steigern. Die Steifigkeit dieser Materialien ist ein anderer Aspekt. Als Alternative für anorganische TE Materialien sind Polymer basierte TE Materialien zum Fokus der Forschung geworden aufgrund einer intrinsisch niedrigen thermischen Leitfähigkeit, hohen Flexibilität und hohen elektrischen Leitfähigkeit. Des Weiteren können diese Polymere in gelöster Form verarbeitet werden, was die Möglichkeit für den Einsatz von Drucktechnologien und damit geringeren Produktionskosten gibt. Anders als der herkömmliche Ansatz den Leistungsfaktor der Polymerfilme durch die Ergänzung von sekundären Dotanten in PEDOT:PSS Lösungen zu verändern, wurde in dieser Arbeit eine effizientere Methode zur Verbesserung der TE Eigenschaften gesucht. In dieser Arbeit wird zum ersten Mal gezeigt, dass die Nachbehandlung von PEDOT:PSS Schichten mit sekundären Dotanten Dimethylsulfoxid (DMSO) als Medium der Nachbehandlung zu einem viel höheren Leistungsfaktor führt als bei der Zugabemethode und außerdem die sonst erforderliche Mischprocedur vermeidet. Es wurden verschiedene Lösungsmittel ausgewählt um die Einflussfaktoren bei der Modifikation des Leistungsfaktors durch die Nachbehandlung von Polymerschichten zu diskutieren. Die Nachbehandlung von PEDOT:PSS Schichten wurde nachfolgend erweitert um das umweltfreundliche Lösungsmittel EMIMBF4 (eine ionische Flüssigkeit) als das Medium einzusetzen. EMIMBF4 ist bekannt für den Austausch von Ionen mit PEDOT:PSS Schichten, so dass EMIM Kationen in der Schicht verbleiben, die Oxidationsstufe der PEDOT-Ketten senken und damit den Seebeck-Koeffizient und die elektrische Leitfähigkeit beeinflussen. Des Weiteren konzentriert sich diese Arbeit auf TE Materialien basierend auf Kompositen aus Polymeren mit Nanoeinlagerungen. Erfolgreiche Syntheseansätze wurden für Tellur-Nanostrukturen entwickelt, bei denen keine giftigen Reduktionsmittel und keine giftigen Tellur-Quellen zur Verwendung kamen. Es erfolgte die Erzeugung von kontrollierten Tellur-Nanostrukturen, einschließlich Nanostäben, Nanodrähten und Nanoröhren, mit nass-chemischer und hydrothermaler Synthese. Die so hergestellten Nanodrähte wurden dann in PEDOT:PSS Lösungen integriert für die Herstellung von Komposite-Schichten. Dabei konnte ein hoher Seebeck-Koeffizienten, bis zu 200 μV/K, festgestellt werden.

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