Synergistic effect of microscopic buckle and macroscopic coil for self-powered organ motion sensor

Citations

WEB OF SCIENCE

12
Citations

SCOPUS

11

초록

Although soft mechano-electrochemical energy harvesters have attracted considerable attention as wearable sensors, they face challenges, including low output performance, high Young's modulus and low energy-conversion efficiency. To address these limitations, we introduce a novel design featuring macroscopically coiled and microscopically buckled fibres to improve the mechano-electrochemical energy-harvesting capability, thereby maximising capacitance change and affording higher electrical output. The harvester achieved a gravimetric peak current density of 121 A/kg and a peak power density of 16 W/kg. Moreover, the harvester showed enhanced stretchability under a strain of over 400 %, low Young's modulus of 0.2 MPa and an energy conversion efficiency of 0.33 %. Furthermore, when implanted in a pig's bladder, it showed minimal impact during expansion and contraction thanks to its softness and provided real-time electrical output in response to static and dynamic volume changes.

키워드

Mechano-electrochemical energy harvesterSelf-powered sensorSoftnessFibreStretchableENERGYFIBER
제목
Synergistic effect of microscopic buckle and macroscopic coil for self-powered organ motion sensor
저자
Sim, Hyeon JunKim, JuwanSon, WonkyeongLee, Jae MyeongLee, Dong YeopKim, Young-JinKim, Young-KwanKim, Seon JeongOh, Jae-MinChoi, Changsoon
DOI
10.1016/j.nanoen.2024.109889
발행일
2024-09
유형
Article
저널명
Nano Energy
128
페이지
1 ~ 11