摩擦电效应
软件可移植性
纳米发生器
能量收集
接触带电
小型化
电气工程
压力传感器
功率(物理)
数码产品
计算机科学
纳米技术
工程类
机械工程
材料科学
压电
物理
量子力学
复合材料
程序设计语言
作者
Quang Tan Nguyen,Duy Linh Vu,Chau Duy Le,Kyoung Kwan Ahn
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2023-06-25
卷期号:23 (13): 5888-5888
被引量:25
摘要
Recently, there has been a growing need for sensors that can operate autonomously without requiring an external power source. This is especially important in applications where conventional power sources, such as batteries, are impractical or difficult to replace. Self-powered sensors have emerged as a promising solution to this challenge, offering a range of benefits such as low cost, high stability, and environmental friendliness. One of the most promising self-powered sensor technologies is the L-S TENG, which stands for liquid-solid triboelectric nanogenerator. This technology works by harnessing the mechanical energy generated by external stimuli such as pressure, touch, or vibration, and converting it into electrical energy that can be used to power sensors and other electronic devices. Therefore, self-powered sensors based on L-S TENGs-which provide numerous benefits such as rapid responses, portability, cost-effectiveness, and miniaturization-are critical for increasing living standards and optimizing industrial processes. In this review paper, the working principle with three basic modes is first briefly introduced. After that, the parameters that affect L-S TENGs are reviewed based on the properties of the liquid and solid phases. With different working principles, L-S TENGs have been used to design many structures that function as self-powered sensors for pressure/force change, liquid flow motion, concentration, and chemical detection or biochemical sensing. Moreover, the continuous output signal of a TENG plays an important role in the functioning of real-time sensors that is vital for the growth of the Internet of Things.
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