记忆电阻器
感知
材料科学
电阻随机存取存储器
纳米技术
计算机科学
人工智能
神经科学
工程类
电子工程
电气工程
心理学
电压
作者
Chuan Yang,Hongyan Wang,Guangdong Zhou,Hongbin Zhao,Wentao Hou,Shouhui Zhu,Yong Zhao,Bai Sun
出处
期刊:Small
[Wiley]
日期:2024-07-26
标识
DOI:10.1002/smll.202402588
摘要
Abstract With the continuous advancement of wearable technology and advanced medical monitoring, there is an increasing demand for electronic devices that can adapt to complex environments and have high perceptual sensitivity. Here, a novel artificial injury perception device based on an Ag/HfO x /ITO/PET flexible memristor is designed to address the limitations of current technologies in multimodal perception and environmental adaptability. The memristor exhibits excellent resistive switching (RS) performance and mechanical flexibility under different bending angles (BAs), temperatures, humid environment, and repetitive folding conditions. Further, the device demonstrates the multimodal perception and conversion capabilities toward voltage, mechanical, and thermal stimuli through current response tests under different conditions, enabling not only the simulation of artificial injury perception but also holds promise for monitoring and controlling the movement of robotic arms. Moreover, the logical operation capability of the memristor‐based reconfigurable logic (MRL) gates is also demonstrated, proving the device has great potential applications with sensing, storage, and memory functions. Overall, this study not only provides a direction for the development of the next‐generation flexible multimodal sensors, but also has significant implications for technological advancements in many fields such as robotic arms, electronic skin (e‐skin), and medical monitoring.
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