logo
Loading...
High performance temperature difference triboelectric nanogenerator

Engineering and Technology

High performance temperature difference triboelectric nanogenerator

B. Cheng, Q. Xu, et al.

Discover how Bolang Cheng, Qi Xu, Yaqin Ding, Suo Bai, Xiaofeng Jia, Yangdianchen Yu, Juan Wen, and Yong Qin have engineered a groundbreaking temperature difference triboelectric nanogenerator (TDNG) that significantly enhances electrical output in high-temperature conditions, achieving unprecedented performance metrics through innovative design.... show more
Abstract
Usually, high temperature decreases the output performance of triboelectric nanogenerator because of the dissipation of triboelectric charges through the thermionic emission. Here, a temperature difference triboelectric nanogenerator is designed and fabricated to enhance the electrical output performance in high temperature environment. As the hotter friction layer's temperature of nanogenerator is 0 K to 145 K higher than the cooler part's temperature, the output voltage, current, surface charge density and output power are increased 2.7, 2.2, 3.0 and 2.9 times, respectively (from 315 V, 9.1 µA, 19.6 µC m−2, 69 µW to 858 V, 20 µA, 58.8 µC m−2, 206.7 µW). With the further increase of temperature difference from 145 K to 219 K, the surface charge density and output performance gradually decrease. At the optimal temperature difference (145 K), the largest output current density is 443 µA cm−2, which is 26.6% larger than the reported record value (350 µA cm−2).
Publisher
Nature Communications
Published On
Aug 06, 2021
Authors
Bolang Cheng, Qi Xu, Yaqin Ding, Suo Bai, Xiaofeng Jia, Yangdianchen Yu, Juan Wen, Yong Qin
Tags
triboelectric nanogenerator
temperature difference
high-temperature environments
electrical output
surface charge density
current density
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 22+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny