摩擦电效应
纳米发生器
能量转换
能量收集
能量转换效率
材料科学
机械能
太阳能
光伏
高效能源利用
电压
能量(信号处理)
纳米技术
光伏系统
电气工程
光电子学
功率(物理)
工程类
物理
复合材料
统计
热力学
量子力学
数学
作者
Zheng Yang,Tong Liu,Junpeng Wu,Tiantian Xu,Xiandi Wang,Xun Han,Hongzhi Cui,Xiaofeng Xu,Caofeng Pan,Xiaoyi Li
标识
DOI:10.1002/adma.202202238
摘要
The triboelectric nanogenerator (TENG) is an emerging technology that offers excellent potential for the conversion of mechanical energy from rain into electricity for hybrid energy applications. However, a high-performance TENG is yet to be achieved because a quantitative analysis method for the energy conversion process is still lacking. Herein, a quantitative analysis method, termed the "kinetic energy calculation and current integration" (KECCI) method, which significantly improves the understanding of the mechanical-to-electrical energy conversion process, is presented. Based on the KECCI method, a high-performance TENG is developed by systematically optimizing a biomimetic surface structure and instant switch design, with 1.25 mA short-circuit current (Isc ), 150 V open-circuit voltage (Voc ), and a high energy-conversion efficiency of 24.89%. Furthermore, a multilayered TENG device is proposed for continuously harvesting the kinetic energy of raindrops for further improvement in the energy-conversion efficiency. Finally, the multilayered TENGs are integrated with organic photovoltaics, achieving all-weather energy harvesting. This work presents a validated theoretical basis that will guide further development of TENGs toward higher performances, which will promote the commercialization of hybrid TENG systems for all-weather applications.
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