摩擦电效应
材料科学
韧性
极限抗拉强度
复合材料
制作
模数
聚合物
断裂韧性
纳米技术
医学
替代医学
病理
作者
Chenchen Cai,Xiangjiang Meng,Lixin Zhang,Bin Luo,Yanhua Liu,Tao Liu,Song Zhang,Jinlong Wang,Mingchao Chi,Cong Gao,Yiqing Bai,Shuangfei Wang,Shuangxi Nie
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-03-18
卷期号:24 (12): 3826-3834
被引量:9
标识
DOI:10.1021/acs.nanolett.4c00918
摘要
Lightweight, easily processed, and durable polymeric materials play a crucial role in wearable sensor devices. However, achieving simultaneously high strength and toughness remains a challenge. This study addresses this by utilizing an ion-specific effect to control crystalline domains, enabling the fabrication of a polymeric triboelectric material with tunable mechanical properties. The dense crystal-domain cross-linking enhances energy dissipation, resulting in a material boasting both high tensile strength (58.0 MPa) and toughness (198.8 MJ m–3), alongside a remarkable 416.7% fracture elongation and 545.0 MPa modulus. Leveraging these properties, the material is successfully integrated into wearable self-powered devices, enabling real-time feedback on human joint movement. This work presents a valuable strategy for overcoming the strength-toughness trade-off in polymeric materials, paving the way for their enhanced applicability and broader use in diverse sensing applications.
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