Stretchable and biodegradable triboelectric nanogenerator based on elastomeric nanocomposites

Authors
Kang, HeeseokHan, Won BaeYang, Seung MinKo, Gwan-JinRyu, YelynnLee, Joong HoonShin, Jeong-WoongJang, Tae-MinRajaram, KavetiHan, SungkeunKim, Dong-JeLim, Jun HyeonEom, Chan-HwiBandodkar, Amay J.Hwang, Suk-Won
Issue Date
2023-11
Publisher
Elsevier BV
Citation
Chemical Engineering Journal, v.475
Abstract
Biologically benign, dissolvable materials-based triboelectric nanogenerators hold significant potential as a sustainable power source for bioresorbable, transient electronic systems; however poor options in materials and engineering approaches are major obstacles to the desired electrical, physical, and mechanical properties, particularly when considering operations under restrictive, demanding conditions or environments. Here, we present an elastomeric composites-based triboelectric nanogenerator with a package of completely degradable materials. Assembly of inorganic nanoparticles with high charge affinity/permittivity and micro-pyramid structures with high surface area produces enhanced charge density and power outputs over those of existing elements. Study on mechanical and biochemical characteristics validates the capability of maintaining stable, long-life electrical outputs under cyclic tests and aqueous solutions. Demonstrations of energy harvesting at an artificial knee and self-powered motion sensing at a finger joint suggest the practical feasibility in versatile areas of biomedical and eco-resorbable electronics.
Keywords
CHARGE-DENSITY; PERFORMANCE; ENERGY; Triboelectric nanogenerators; Biodegradable elastomers; Stretchable nanocomposite; Energy harvesters; Motion sensors
ISSN
1385-8947
URI
https://pubs.kist.re.kr/handle/201004/149295
DOI
10.1016/j.cej.2023.146208
Appears in Collections:
KIST Article > 2023
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