仿真
晶体管
材料科学
感觉系统
触觉刺激
触觉传感器
频道(广播)
鉴定(生物学)
纳米技术
计算机科学
电气工程
电压
神经科学
人工智能
工程类
电信
生物
经济增长
机器人
经济
植物
作者
Guocai Liu,Wei Wen,Zhiyuan Zhao,Xin Huang,Yifan Li,Mingcong Qin,Zhichao Pan,Yunlong Guo,Yunqi Liu
标识
DOI:10.1002/adma.202300242
摘要
Abstract Human sensory receptors enable the real world to be perceived effortlessly. Hence, massive efforts have been devoted to the development of bionic receptors capable of identifying objects. Unfortunately, most of the existing devices are limited to single sensory emulation and are established on solid‐state electronic technologies, which are incompatible with the biological reactions occurring in electrolyte media. Here, an iontronic tactile‐gustatory receptor using an all‐polymer electrochemical transistor (AECT) is presented. The sensor is biocompatible with the operation voltage of 0.1 V, which is 1 to 2 orders lower than those of reported values. By this study, one receptor is able to accurately recognize various objects perceived by the human tactile and gustatory system without complex circuitry. Additionally, to promote its further application, flexible AECT arrays with channel length of 2 µm and density of 104 167 transistors cm −2 (yield of 97%) are fabricated, 1 to 5 orders higher than those of related works. Finally, a flexible integrated network for electrocardiogram recording is successfully constructed. This study moves a step forward toward state‐of‐the‐art bionic sensors.
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