纳米发生器
磁铁
摩擦电效应
电池(电)
灵敏度(控制系统)
材料科学
磁场
电气工程
声学
物理
计算机科学
功率(物理)
压电
电子工程
工程类
量子力学
复合材料
作者
Trilochan Bhatta,Pukar Maharjan,Md Salauddin,M. Toyabur Rahman,SM Sohel Rana,Jae Yeong Park
标识
DOI:10.1002/adfm.202003276
摘要
Abstract Self‐powered arbitrary motion sensors are in high demand in the field of autonomous controlled systems. In this work, a magnetic repulsion‐assisted self‐powered motion sensor is integrated with a hybrid nanogenerator (MRSMS–HNG) as a battery‐less arbitrary motion sensing system. The proposed device can efficiently detect the motion parameters of a moving object along any arbitrary direction and simultaneously convert low frequency (<5 Hz) vibrations into useful electricity. The MRSMS–HNG consists of a central magnet for the electromagnetic (EMG)–triboelectric (TENG) nanogenerator and four side magnets for motion sensors. Because all the magnets are aligned in the same magnetization direction, the repulsive force owing to the movement of the central magnet actuates the side magnets to achieve self‐powered arbitrary motion sensing. These self‐powered motion sensors exhibit a high sensitivity of 981.33 mV g −1 under linear motion excitation and have a tilting angle sensitivity of 9.83 mV deg −1 . The proposed device can deliver peak powers of 27 mW and 56 µW from the EMG and TENG, respectively. By integrating the self‐powered motion sensors and hybrid nanogenerator on a single device, real‐time wireless transmission of motion sensor data to a smartphone is successfully demonstrated, thus realizing a battery‐less arbitrary motion‐sensing system for future autonomous control applications.
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