摩擦电效应
纳米发生器
水下
材料科学
能量收集
机械能
功率(物理)
海洋工程
电气工程
计算机科学
环境科学
复合材料
工程类
物理
地质学
海洋学
压电
量子力学
作者
Бо Лю,Taili Du,Xiaoyan Xu,Jianhua Liu,Peng Zhu,Linan Guo,Yuanzheng Li,Tianrun Wang,Yongjiu Zou,Hao Wang,Peng Xu,Peiting Sun,Minyi Xu
摘要
Implantable electronic tags are crucial for the conservation of marine biodiversity. However, the power supply associated with these tags remains a significant challenge. In this study, an underwater flexible triboelectric nanogenerator (UF-TENG) was proposed to harvest the biomechanical energy from the movements of marine life, ensuring a consistent power source for the implantable devices. The UF-TENG, which is watertight by the protection of a hydrophobic poly(tetrafluoroethylene) film, consists of high stretchable carbon black-silicone as electrode and silicone as a dielectric material. This innovative design enhances the UF-TENG’s adaptability and biocompatibility with marine organisms. The UF-TENG’s performance was rigorously assessed under various conditions. Experimental data highlight a peak output of 14 V, 0.43 μA and 38 nC, with a peak power of 2.9 μW from only one unit. Notably, its performance exhibited minimal degradation even after three weeks, showing its excellent robustness. Furthermore, the UF-TENG is promising in the self-powered sensing of the environmental parameter and the marine life movement. Finally, a continuous power supply of an underwater temperature is achieved by paralleling UF-TENGs. These findings indicate the broad potential of UF-TENG technology in powering implantable electronic tags.
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