Microbuckled Mechano-electrochemical Harvesting Fiber for Self-Powered Organ Motion Sensors

  • Sim, Hyeon Jun
  • Choi, Changsoon
Citations

WEB OF SCIENCE

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Citations

SCOPUS

21

초록

Mechanical harvesters have attracted tremendous attention as self-powered strain sensors; previous harvesters required high stress to stretch the fiber because of their high Young's modulus and low elasticity. We report on a mechano-electrochemical harvesting (MECH) fiber based on the new buckle structure, which has a low Young's modulus (2 MPa) with high elasticity (up to 100%) in a similar physiological fluid. MECH converts mechanical energy into electrical energy by changing the capacitance due to changing the surface area caused by the microbuckle on the surface. The damage to the cells can be minimized by their softness; the fiber was stitched on the tissue of the pig stomach while maintaining the performance like a suture fiber. Additionally, the fiber successfully operated in an organ-similar system, which is composed of the stomach or bladder of a pig. The fiber has a high potential to be applied in wearable energy sources and self-powered strain sensors.

키워드

Mechano-electrochemical energy harvesterself-powered sensorSoftFiberStretchableCARBON NANOTUBE YARNSYOUNGS MODULUSENERGYNANOGENERATORS
제목
Microbuckled Mechano-electrochemical Harvesting Fiber for Self-Powered Organ Motion Sensors
저자
Sim, Hyeon JunChoi, Changsoon
DOI
10.1021/acs.nanolett.2c03296
발행일
2022-10
유형
Article
저널명
Nano Letters
22
21
페이지
8695 ~ 8703