Multifunctional flexible strain sensor based on three‐dimensional core‐shell structures of silver nanoparticles/natural rubber

Author:

Chen Zihao1,Sun Jinyu12ORCID,Zhan Ziwei1,Yuan Yizhong12,Tian Xiaohui12,Jin Jie3,Wu Wangbao3,Ayikanbaier Kadier4

Affiliation:

1. School of Materials Science and Engineering, East China University of Science and Technology Shanghai People's Republic of China

2. Shanghai Key Laboratory of Advanced Polymeric Materials, East China University of Science and Technology Shanghai People's Republic of China

3. Shanghai Engineering Research Center of Cards & Identification Documents Shanghai People's Republic of China

4. College of Humanities and Basic Education, Xinjiang Vocational & Technical College of Communications Urumqi People's Republic of China

Abstract

AbstractConventional wearables may pose a health risk by promoting the growth of bacteria on the skin's surface due to sweating or contamination. Here, a multifunctional strain‐sensing composite has been fabricated through the combination of highly elastic natural rubber (NR) with silver nanoparticles (AgNPs), which possess antimicrobial and electrical conductivity properties. A 3D core‐shell structure composed of AgNPs and NR microspheres effectively reduces the percolation threshold of the AgNPs conductive network. As a strain sensor, the composite film presents a wide sensing range (0%–970%), an exceptionally high gauge factor (GF) value (59.3), and favorable cycling stability (over 1500 cycles at 50%). Finally, the composite film also exhibits antibacterial and hydrophobic properties, indicating its potential for use in challenging environments.

Funder

Chinese Government Scholarship

Publisher

Wiley

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