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In Situ Synthesis of Polythiophene and Silver Nanoparticles within a PMMA Matrix: A Nanocomposite Approach to Thermoelectrics

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In Situ Synthesis of Polythiophene and Silver Nanoparticles within a PMMA Matrix: A Nanocomposite Approach to Thermoelectrics

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dc.contributor.author Serrano Claumarchirant, José Francisco
dc.contributor.author Seijas Da Silva, Álvaro
dc.contributor.author Sánchez Royo, Juan Francisco
dc.contributor.author Culebras, Mario
dc.contributor.author Cantarero, Andrés
dc.contributor.author Gómez, Clara M.
dc.contributor.author Abargues López, Rafael
dc.date.accessioned 2023-06-15T09:22:38Z
dc.date.available 2023-06-16T04:45:06Z
dc.date.issued 2022 es_ES
dc.identifier.citation Serrano-Claumarchirant, J. F., Silva, A. S. D., Sanchez-Royo, J. F., Culebras, M., Cantarero, A., Gómez, C. M., & Abargues, R. (2022). In Situ Synthesis of Polythiophene and Silver Nanoparticles within a PMMA Matrix: A Nanocomposite Approach to Thermoelectrics. ACS Applied Energy Materials, 5 (9), 11067-11076. es_ES
dc.identifier.uri https://hdl.handle.net/10550/87920
dc.description.abstract The processability of organic thermoelectric materials plays a crucial role due to their clear advantages of applicability in large-scale areas compared to traditional inorganic counterparts. A promising way to process thermoelectric materials based on conductive polymers is through in situ polymerization in an insulating polymer matrix. This work shows an interpenetrating polymeric network based on polythiophene, silver nanoparticles (Ag NPs), and poly(methyl methacrylate) (PMMA) produced by the oxidative polymerization of terthiophene by an oxidizing silver salt in a PMMA matrix. Ag NPs are in situ synthesized simultaneously as a byproduct. The reaction occurs very fast in the solid state, and after only 1 min, a homogeneous interpenetrating polymer network (IPN) film is obtained, reaching electrical conductivity values of 120 S cm–1. Ag NPs play a determining role in the conducting properties of the IPN. Moreover, the thermoelectric properties were evaluated as a function of the synthesis parameters, reaching a maximum power factor of 51 μW m–1 K–2. This study shows a promising method to enhance the processability of hybrid thermoelectric materials on the basis of conductive polymers and nanofillers. es_ES
dc.language.iso en es_ES
dc.publisher ACS es_ES
dc.subject in situ synthesis es_ES
dc.subject conducting polymer es_ES
dc.subject silver nanoparticles es_ES
dc.subject thermoelectric materials es_ES
dc.subject thin films es_ES
dc.title In Situ Synthesis of Polythiophene and Silver Nanoparticles within a PMMA Matrix: A Nanocomposite Approach to Thermoelectrics es_ES
dc.type journal article es_ES
dc.subject.unesco UNESCO::CIENCIAS TECNOLÓGICAS es_ES
dc.identifier.doi 10.1021/acsaem.2c01701 es_ES
dc.accrualmethod CI es_ES
dc.embargo.terms 0 days es_ES
dc.type.hasVersion VoR es_ES
dc.rights.accessRights open access es_ES

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