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基于激光诱导石墨烯的柔性传感器最新研究进展 被引量:4

Recent research progress of flexible sensors based on laser induced graphene
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摘要 近年来,高集成、多功能、微型化的电子皮肤器件备受研究者的关注。其中,可穿戴设备具有轻便、柔性、检测人体及环境信息等优势,是柔性电子领域极具发展潜力的器件。为了制备高性能的可穿戴器件,与其相关的材料制备、器件设计、多功能集成等方面得到研究。石墨烯作为一种优异的导电材料,广泛应用于柔性电子领域。特别地,激光诱导石墨烯的发现为可穿戴设备的设计和制备提供了一个单步加工的策略。本文主要从激光诱导石墨烯的制备工艺、应用于可穿戴设备的单模态传感器件、多功能器件三个方面对最新研究进行综述,最后进行总结和展望。 In recent years,highly integrated,multifunctional,and miniaturized electronic skin devices have attracted the attention of researchers.Among them,wearable devices have the advantages of lightness,flexibility,detection of human body and environmental information,and are devices with great development potential in the field of flexible electronics.In order to prepare high-performance wearable devices,related materials preparation,device design,and multifunctional integration have been studied.As an excellent conductive material,graphene is widely used in the field of flexible electronics.Especially,the discovery of laser-induced graphene provides a one-step processing strategy for the design and preparation of wearable devices.This article mainly reviews the latest research from three aspects:the preparation process of laser-induced graphene,single-mode sensor devices and multifunctional devices used in wearable devices,and finally summarizes and prospects.
作者 崔进京 文丹良 徐丽 陈爽 张晓升 CUI Jin-jing;WEN Dan-liang;XU Li;CHEN Shuang;ZHANG Xiao-Sheng(School of Electronic Science and Engineering,University of Electronic Science and Technology of China,Chengdu 611731,China;Rehabilitation Department,Sichuan Provincial People’s Hospital,Chengdu 610072,China)
出处 《功能材料与器件学报》 CAS 2021年第4期304-314,共11页 Journal of Functional Materials and Devices
基金 国家自然科学基金(No.62074029,No.61804023,No.61971108) 四川省科技项目(No.2020ZHCG0038,No.2019YJ0198,No.2020YJ0015) 中央高校基本科研业务费项目(No.ZYGX2019Z002)
关键词 可穿戴器件 激光诱导石墨烯 柔性传感 Wearable devices Laser induced graphene Flexible sensors
作者简介 崔进京,女,硕士研究生,主要研究方向为可穿戴式器件(E-mail:cuijinjing2016@163.com);通信作者:张晓升,男,博士,教授,主要研究方向为微纳机电系统(E-mail:zhangxs@uestc.edu.cn);通信作者:徐丽,女,硕士,副主任技师,主要研究方向为康复医学(E-mail:xuli_0125@163.com).
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