Synthesis of Superelastic, Highly Conductive Graphene Aerogel/Liquid Metal Foam and its Piezoresistive Application

Author:

Ma Jinlong12,Yan Rui1,Wo Xiaoye1,Cao Yanpeng12,Yu Xiao12,Li Aijun123,Huang Jian123,Li Fenghua24,Luo Liqiang12,Zhang Qixian123ORCID

Affiliation:

1. School of Materials Science and Engineering Shanghai University 200436 Shanghai PR China

2. Shaoxing Institute of Technology Shanghai University 312000 Shaoxing PR China

3. Zhejiang Institute of Advanced Materials Shanghai University 314113 Jiashan PR China

4. State Key Laboratory of Electroanalytical Chemistry Changchun Institute of Applied Chemistry Chinese Academy of Sciences 5625 Renmin Street 130022 Changchun Jilin China

Abstract

AbstractGraphene aerogel (GA) has important application potential as piezoresistive sensors due to its low density, high conductivity, high porosity, and good mechanical properties. However, the fabrication of GA‐based sensors with good mechanical properties and excellent sensing performance is still challenging. Herein, liquid‐ metal‐modified GAs (GA/LM) are proposed for the development of an excellent GA‐based sensor. GA/LM with three‐dimensional interconnected layered structure exhibits excellent compressive stress of 41 KPa and fast response time (<20 ms). While generally flexible GA composites cannot be compressed beyond 80 % strain without plastic deformation, GA/LM demonstrates a high compressive strength of 60 kPa under a strain of 90 %. A real‐time pressure sensor was fabricated based on GA/LM‐2 to monitor swallowing, pulse beating, finger, wrist and knee bending, and even plantar pressure during walking. These excellent features enable potential applications in health detection.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jilin Province

Publisher

Wiley

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