摩擦电效应
材料科学
纳米发生器
加速度
灵敏度(控制系统)
汽车工业
接触面积
纳米技术
工作(物理)
电压
能量收集
智能材料
接口(物质)
计算机科学
碳纳米管
钥匙(锁)
汽车工程
领域(数学)
声学
触觉传感器
信号(编程语言)
接触力
机械工程
仿生学
仿生材料
功率(物理)
压电
静电感应
作者
Hongyun Chen,Gui-Gen Wang,Jing Zhong,Wei Guan
标识
DOI:10.1021/acsami.5c22140
摘要
To enhance motion monitoring and braking distance estimation capabilities for automotive assisted driving systems, this study presents a novel spherical triboelectric nanogenerator (S-TENG) sensor with directional detection capacity. The key innovation lies in integrating material self-forming surface micropores with a carbon nanotube sponge, which creates an enhanced triboelectric interface that significantly optimizes contact dynamics. This unique configuration increases the effective contact area by more than 98.6% and enables detection of subtle motion signals with superior force sensitivity (100.00 kPa–1). A major scientific contribution of this work is establishing comprehensive correlations between output signals and critical parameters, including acceleration (0.2–4.1 m/s2), load (75–500 Pa), and directional vectors. Furthermore, we develop a groundbreaking self-sensing approach by continuously monitoring the peak open-circuit voltage (VOC) and incorporating the braking distance factor L to establish a self-sensing equation for the friction coefficient based on the time integral of VOC, which represents a significant advancement in self-powered sensing for intelligent transportation. The sensor achieves an acceleration sensitivity of 7.03 V/(m/s2), demonstrating its capability to provide multidirectional motion data. This study not only provides a viable strategy to enhance assisted driving safety but also advances the field of self-powered sensing technologies through its innovative design and analytical framework.
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