Temperature sensing using junctions between mobile ions and mobile electrons

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초록

Sensing technology is under intense development to enable the Internet of everything and everyone in new and useful ways. Here we demonstrate a method of stretchable and self-powered temperature sensing. The basic sensing element consists of three layers: an electrolyte, a dielectric, and an electrode. The electrolyte/dielectric interface accumulates ions, and the dielectric/electrode interface accumulates electrons (in either excess or deficiency). The ions and electrons at the two interfaces are usually not charge-neutral, and this charge imbalance sets up an ionic cloud in the electrolyte. The design functions as a charged temperature-sensitive capacitor. When temperature changes, the ionic cloud changes thickness, and the electrode changes opencircuit voltage. We demonstrate high sensitivity (-1 mV/K) and fast response (-10 ms). Such temperature sensors can be made small, stable, and transparent. Depending on the arrangement of the electrolyte, dielectric, and electrode, we develop four designs for the temperature sensor. In addition, the temperature sensor has good linearity in the range of tens of Kelvin. We further show that the temperature sensors can be integrated into stretchable electronics and soft robots.

키워드

stretchable electronicsionotronicsnonfaradaic interfaceself-powered thermometerhydrogelTRANSPARENTCONDUCTORS
제목
Temperature sensing using junctions between mobile ions and mobile electrons
저자
Wang, YechengJia, KunZhang, ShuwenKim, Hyeong JunBai, YangHayward, Ryan C.Suo, Zhigang
DOI
10.1073/pnas.2117962119
발행일
2022-01-25
유형
Article
저널명
Proceedings of the National Academy of Sciences of the United States of America
119
4