材料科学
薄膜晶体管
压力传感器
有源矩阵
光电子学
电子皮肤
晶体管
传感器阵列
柔性电子器件
纳米技术
计算机科学
电气工程
图层(电子)
机械工程
机器学习
工程类
电压
作者
Xianyang Xue,Tingting Zhao,Xueming Tian,Li Yuan,Wang Zhi-gan,Tongkuai Li,Jianhua Zhang
标识
DOI:10.1002/admt.202100849
摘要
Abstract The skin‐like temperature–pressure sensing capabilities are fundamental features for the next‐generation artificial intelligence applications, such as human–machine interactions and soft robotics. The previous studies on sensing devices have focused on single‐point pressure or temperature sensing, whereas detecting the distributions of pressure and temperature simultaneously still remain challenging. In this article, a flexible dual‐parameter sensor array based on amorphous indium gallium zinc oxide (a‐IGZO) thin film transistors (TFTs) is proposed. In the proposed array, the decoupling of pressure and temperature perceptions is realized by optimizing the combination of MXene and carbon nanotubes in the form of hybrid films based on a difference in the temperature coefficient. The amplification of the sensing signal and scale sensor array is achieved by using the a‐IGZO TFT‐based cross‐active matrix addressing design. After being amplified by TFTs, the pressure and temperature sensors exhibit satisfactory sensitivity. Further, a 7 × 4 pressure array and a 6 × 4 temperature array are alternately integrated on a 5 cm × 5 cm area, thus achieving spatial distribution mapping of the pressure and temperature signals simultaneously without interference. The proposed design has a potential application in the field of multifunctional electronic skin.
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