材料科学
复合数
焦耳(编程语言)
焦耳加热
杰纳斯
原位
复合材料
纳米技术
碳纤维
电压
电气工程
高效能源利用
物理
气象学
工程类
作者
Ming Zhou,Jingwen Wang,Gehuan Wang,Yue Zhao,Jiameng Tang,Jiaxin Pan,Guangbin Ji
标识
DOI:10.1016/j.compositesb.2022.110110
摘要
Multifunctional materials with electromagnetic interference (EMI) shielding, thermal management, sensing, and comfort characteristics are greatly desirable in the application of intelligent and wearable devices. However, the multifunctional integration and low energy consumption of wearable devices remain a great challenge. Herein, inspired by the lotus leaf, a strategy of in situ asymmetric modification is proposed to construct a highly conductive and multifunctional Janus carbon [email protected] nanoparticles (AgNPs) composite. Due to the uniform AgNPs layer together with carbon fiber, the resultant multifunctional composite demonstrates high electric conductivity with shielding effectiveness (SE) of ∼65 dB at a thickness of 270 μm. The composite also exhibits a great joule-heating property with the saturated temperature of 61.1 °C at an extremely low voltage of 1 V, as well as boosted thermal durability. More importantly, the asymmetrical feature constructed by a unique nano-micro structure endows the composite with simultaneously hydrophobic and superhydrophilic properties, which may integrate sweat removal and waterproof functions for manufacturing comfortable wearable devices. In addition, the carbon [email protected] composite displays enormous potential as a sensor for human motion monitoring. Therefore, this work would provide a vital sight for fabricating advanced wearable equipment with EMI shielding, thermal management, and multifunctional applications.
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