纳米发生器
水下
能量收集
摩擦电效应
可穿戴技术
电压
材料科学
灵活性(工程)
数码产品
可穿戴计算机
功率(物理)
纳米技术
计算机科学
电气工程
工程类
物理
嵌入式系统
地质学
复合材料
海洋学
统计
量子力学
数学
作者
Yang Zou,Puchuan Tan,Bojing Shi,Han Ouyang,Dongjie Jiang,Zhuo Liu,Hu Li,Min Yu,Chan Wang,Xuecheng Qu,Luming Zhao,Yubo Fan,Zhong Lin Wang,Zhou Li
标识
DOI:10.1038/s41467-019-10433-4
摘要
Abstract Soft wearable electronics for underwater applications are of interest, but depend on the development of a waterproof, long-term sustainable power source. In this work, we report a bionic stretchable nanogenerator for underwater energy harvesting that mimics the structure of ion channels on the cytomembrane of electrocyte in an electric eel. Combining the effects of triboelectrification caused by flowing liquid and principles of electrostatic induction, the bionic stretchable nanogenerator can harvest mechanical energy from human motion underwater and output an open-circuit voltage over 10 V. Underwater applications of a bionic stretchable nanogenerator have also been demonstrated, such as human body multi-position motion monitoring and an undersea rescue system. The advantages of excellent flexibility, stretchability, outstanding tensile fatigue resistance (over 50,000 times) and underwater performance make the bionic stretchable nanogenerator a promising sustainable power source for the soft wearable electronics used underwater.
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