摩擦电效应
纳米发生器
材料科学
电容器
能量收集
电阻抗
输出阻抗
电气工程
储能
可再生能源
功率(物理)
功率密度
光电子学
电流密度
电流(流体)
能量(信号处理)
阻抗匹配
机械能
工作(物理)
交流电
高效能源利用
电压
纳米技术
光伏系统
发电
数码产品
直流电
脉冲功率
工程物理
作者
Yan Li,Jie Yang,Xia Cao,Zhong Lin Wang
标识
DOI:10.1002/adfm.202531038
摘要
ABSTRACT With the increasing global demand for clean and renewable energy, liquid–solid triboelectric nanogenerators (LS‐TENGs) have emerged as promising candidates for efficient high‐entropy energy harvesting. However, their practical application in directly powering electrical devices is limited by high impedance, low current, and alternating output characteristics of LS‐TENGs. To address these limitations, we propose a novel energy management liquid–solid triboelectric nanogenerator (EMLS‐TENG) employing an external energy storage capacitor and a mechanical switch to construct an energy regulation mechanism, enabling high‐amplitude pulsed direct current output and ultra‐low impedance. Compared to conventional LS‐TENGs, the EMLS‐TENG achieves a 7500‐fold increase in output current and a 79‐fold increase in output power. The effects of key parameters, including the selection of triboelectric materials, electronic components, switch distance, and switch size on the output performance of the EMLS‐TENG was systematically investigated. Through an integrated design, the EMLS‐TENG achieves a record‐setting power density of 1135 W/m 3 at the impedance of 0.5 MΩ and a current density of 1120 mA/m 2 . Furthermore, the EMLS‐TENG successfully powered six commercial 15 W light tubes and supplied energy to various commercial sensors. This work provides a leap forward in improving the performance of LS‐TENGs and accelerating their commercial implementation.
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