Liquid Metal Particles-Graphene Core-Shell Structure Enabled Hydrogel-Based Triboelectric Nanogenerators

  • Oh, Sangkeun
  • Lee, Yoonsu
  • Yang, Jungin
  • Lee, Yejin
  • Won, Seoyeon
  • ... Lim, Taehwan
  • 외 2명
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초록

The development of flexible and self-powered electronic systems requires triboelectric materials that combine high charge retention, mechanical compliance, and stable dielectric properties. Here, we report a redox reaction approach to prepare liquid metal particle-reduced graphene oxide (LMP@rGO) core-shell structures and introduce into a poly(acrylic acid) (PAA) hydrogel to create a high-performance triboelectric layer. The spontaneous interfacial reaction between gallium oxide of LMP and graphene oxide produces a conformal rGO shell while simultaneously removing the native insulating oxide layer onto the LMP surface, resulting in enhanced colloidal stability and a controllable semiconductive bandgap of 2.7 (0.01 wt%), 2.9 (0.005 wt%) and 3.2 eV (0.001 wt%). Increasing the GO content promotes more complete core-shell formation, leading to higher zeta potentials, stronger interfacial polarization, and higher electrical performance. After embedding in PAA, the LMP@rGO structures form hydrogen-bonding networks with the hydrogel nature, improving both dielectric constant and charge retention while notably preserving soft mechanical compliance. The resulting LMP@rGO/PAA hydrogels show enhanced triboelectric output, with the 2.0 wt/vol% composite generating sufficient power to illuminate more than half of 504 series-connected LEDs. All the results demonstrate the potential of LMP@rGO hydrogel composites as promising triboelectric layer materials for next-generation wearable and self-powered electronic systems.

키워드

hydrogelgrapheneliquid metalsredox reactiontriboelectricnanogeneratorTRANSPARENTPERFORMANCEPOWER
제목
Liquid Metal Particles-Graphene Core-Shell Structure Enabled Hydrogel-Based Triboelectric Nanogenerators
저자
Oh, SangkeunLee, YoonsuYang, JunginLee, YejinWon, SeoyeonHan, Sang SubKim, Jung HanLim, Taehwan
DOI
10.3390/gels12010086
발행일
2026-01-19
유형
Article
저널명
GELS
12
1