In-plane thermoelectric characterisation of PEDOT: PSS films with inkjet-printed test structures

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Publisher

MDPI

Abstract

A rapid screening method to identify suitable candidate inks for printed electronics applications is necessary. Herein, we investigate the in-plane thermoelectric properties of PEDOT:PSS for energy harvesting applications on human skin using silver nanoparticle inkjet-printed test structures. The in-plane electrical and thermal conductivity are measured. The Seebeck coefficient, ZT figure of merit, and power factor are consequently determined. PEDOT:PSS films resulted in low-efficiency thermoelectric properties at 293 K to 313 K and demonstrated a correlation between film thickness and in-plane thermoelectric properties. This study demonstrates that the test structures enable generalisable characterisation of thin-film inkjet-printable materials for thermoelectric purposes.

Description

NOTE : Presented at the Micro Manufacturing Convergence Conference, Stellenbosch, South Africa, 7–9 July 2024.

Keywords

Thermoelectric test structures, Printed electronics, PEDOT:PSS, Thin films, Energy harvesting, Inkjet printing

Sustainable Development Goals

SDG-07: Affordable and clean energy
SDG-09: Industry, innovation and infrastructure

Citation

Msomi, P. & Joubert, T.-H. In-Plane Thermoelectric Characterisation of PEDOT:PSS Films with Inkjet-Printed Test Structures. Engineering Proceedings 2025, 109, 8: 1-4. https://doi.org/10.3390/engproc2025109008.