材料科学
热敏电阻器
可穿戴技术
可穿戴计算机
热的
瓶颈
工程物理
半导体
柔性电子器件
光电子学
计算机科学
数码产品
纳米技术
热导率
有机半导体
智能材料
作者
Xue‐Feng Zhao,Shi‐Qi Yang,Xiao‐Hong Wen,Qi‐Wei Huang,Peng‐Fei Qiu,Tian‐Ran Wei,Hao Zhang,Jia‐Cheng Wang,David Wei Zhang,Xun Shi,Hong‐Liang Lu
标识
DOI:10.1002/adma.202107479
摘要
Wearable touch panels, a typical flexible electronic device, can recognize and feed back the information of finger touch and movement. Excellent wearable touch panels are required to accurately and quickly monitor the signals of finger movement as well as the capacity of bearing various types of deformation. High-performance thermistor materials are one of the key functional components, but to date, a long-standing bottleneck is that inorganic semiconductors are typically brittle while the electrical properties of organic semiconductors are quite low. Herein, a high-performance flexible temperature sensor is reported by using plastic Ag2S with ultrahigh temperature coefficient of resistance of −4.7% K−1 and resolution of 0.05 K, and rapid response/recovery time of 0.11/0.11 s. Moreover, the temperature sensor shows excellent durability without performance damage or loss during force stimuli tests. In addition, a fully flexible intelligent touch panel composed of a 16 × 10 Ag2S-film-based temperature sensor array, as well as a flexible printed circuit board and a deep-learning algorithm is designed for perceiving finger touch signals in real-time, and intelligent feedback of Chinese characters and letters on an app. These results strongly show that high-performance flexible inorganic semiconductors can be widely used in flexible electronics.
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