How Plasmon Ag Nanoparticles can Enhance the Power Performance of a Thermoelectric Generator

Author:

Serrano‐Claumarchirant José F.12ORCID,Cho Chungyeon3ORCID,Cantarero Andrés4,Culebras Mario1ORCID,Abargues Rafael1ORCID,Gómez Clara M.1ORCID

Affiliation:

1. Institute of Materials Science (ICMUV) Catedrático José Beltrán, 2, Paterna València 46980 Spain

2. School of Engineering and Materials Science Queen Mary University of London Mile End Road London E1 4NS UK

3. Department of Carbon Convergence Engineering College of Engineering Wonkwang University Iksan 54538 Republic of Korea

4. Institute of Molecular Science (ICMol) Catedrático José Beltrán, 2, Paterna València 46980 Spain

Abstract

AbstractThe development of wearable thermoelectric generators (wTEG) represents a promising strategy to replace batteries and supercapacitors required to supply electrical energy for portable electronic devices. However, the main drawback of wTEGs is that the thermal gradient between the skin and the ambient is minimal, reducing the power output produced by the generator. Therefore, it is necessary to improve the thermal management of wTEG in order to increase its efficiency. This work deals with the preparation of a thermoelectric generator that harnesses the plasmonic heating effect to enhance the thermal gradient of the final device. The thermoelectric layer is created through the in situ polymerization of terthiophene (3T) within a polyurethane matrix, utilizing silver (Ag) (I) and copper (II) perchlorate as oxidants. The plasmonic film, composed of Ag‐NP (nanoparticles), is formed via photocatalytic reduction of silver nitrate in the presence of titanium oxide. These layers are then meticulously assembled to yield the hybrid plasmonic/thermoelectric generator.

Publisher

Wiley

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