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Self-healable polymer complex with a giant ionic thermoelectric effect

Engineering and Technology

Self-healable polymer complex with a giant ionic thermoelectric effect

D. Kim, Z. A. Akbar, et al.

Discover an innovative stretchable and self-healable polymer, PEDOT:PAAMPSA:PA, with impressive ionic thermoelectric performance. Achieving an ionic figure-of-merit of 12.3, this research by Dong-Hu Kim, Zico Alaia Akbar, Yoga Trianzar Malik, Ju-Won Jeon, and Sung-Yeon Jang highlights the potential for sustainable self-powering sources using ITEC modules.... show more
Abstract
In this study, we develop a stretchable/self-healable polymer, PEDOT:PAAMPSA:PA, with remarkably high ionic thermoelectric (ITE) properties: an ionic figure-of-merit of 12.3 at 70% relative humidity (RH). The ITE properties of PEDOT:PAAMPSA:PA are optimized by controlling the ion carrier concentration, ion diffusion coefficient, and Eastman entropy, and high stretchability and self-healing ability are achieved based on the dynamic interactions between the components. Moreover, the ITE properties are retained under repeated mechanical stress (30 cycles of self-healing and 50 cycles of stretching). An ionic thermoelectric capacitor (ITEC) device using PEDOT:PAAMPSA:PA achieves a maximum power output and energy density of 4.59 µW·m−2 and 1.95 mJ·m−2, respectively, at a load resistance of 10 kΩ, and a 9-pair ITEC module produces a voltage output of 0.37 V·K−1 with a maximum power output of 0.21 µW·m−2 and energy density of 0.35 mJ·m−2 at 80% RH, demonstrating the potential for a self-powering source.
Publisher
Nature Communications
Published On
Jun 05, 2023
Authors
Dong-Hu Kim, Zico Alaia Akbar, Yoga Trianzar Malik, Ju-Won Jeon, Sung-Yeon Jang
Tags
stretchable polymer
self-healing
ionic thermoelectric
ionic figure-of-merit
ITEC device
power output
energy density
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