摩擦电效应
纳米发生器
材料科学
静电感应
接触带电
光电子学
能量收集
电势能
电磁屏蔽
电流(流体)
屏蔽效应
体积流量
工作(物理)
电压
流量(数学)
机械能
纳米技术
静电学
电荷
水流
不稳定性
电气工程
电流
驻极体
图层(电子)
交流电
能量转换
电荷(物理)
连续流动
能量(信号处理)
作者
Wenqi Wang,Jie Meng,Liqiang Zhang,Wenpeng Wang,Hanchao Wang,Ying Liu,Yange Feng,Xiaojuan Li,Daoai Wang
标识
DOI:10.1002/adma.202507055
摘要
Although the solid-liquid triboelectric nanogenerators have made great progress in energy harvesting, their efficiency is fundamentally limited by the continuous shielding effect of the solid-liquid electric double layer (EDL). Herein, a liquid-jet triboelectric nanogenerator that exploits Plateau-Rayleigh instability (PR-TENG) is demonstrated to overcome this barrier. PR-TENG converts low-frequency water flow into high-frequency droplets, avoiding shielding effects from continuous flow and achieving a contact-separation frequency of ≈50 Hz. At a flow rate of 320 mL min-1, the PR-TENG generates an output current of over 100 µA, ≈120 times the magnitude of conventional single-electrode droplet TENGs (D-TENGs) that rely on electrostatic induction. The operational mechanism of PR-TENG arises from droplet-fusion-induced triboelectrification, surface charge trapping, and charge redistribution, enabling energy harvesting from continuous water flow and water-level monitoring applications. This work significantly improves the electrical output performance of flow-based triboelectric nanogenerators and provides an effective solution for continuous flow-based energy harvesting.
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