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面向非接触式可穿戴电子设备的多功能柔性湿度传感器系统

Multifunctional Flexible Humidity Sensor Systems Towards Noncontact Wearable Electronics.

作者信息

Lu Yuyao, Yang Geng, Shen Yajing, Yang Huayong, Xu Kaichen

机构信息

State Key Laboratory of Fluid Power and Mechatronic Systems, School of Mechanical Engineering, Zhejiang University, Hangzhou, 310027, People's Republic of China.

Department of Biomedical Engineering, City University of Hong Kong, Hong Kong, People's Republic of China.

出版信息

Nanomicro Lett. 2022 Jul 22;14(1):150. doi: 10.1007/s40820-022-00895-5.

Abstract

In the past decade, the global industry and research attentions on intelligent skin-like electronics have boosted their applications in diverse fields including human healthcare, Internet of Things, human-machine interfaces, artificial intelligence and soft robotics. Among them, flexible humidity sensors play a vital role in noncontact measurements relying on the unique property of rapid response to humidity change. This work presents an overview of recent advances in flexible humidity sensors using various active functional materials for contactless monitoring. Four categories of humidity sensors are highlighted based on resistive, capacitive, impedance-type and voltage-type working mechanisms. Furthermore, typical strategies including chemical doping, structural design and Joule heating are introduced to enhance the performance of humidity sensors. Drawing on the noncontact perception capability, human/plant healthcare management, human-machine interactions as well as integrated humidity sensor-based feedback systems are presented. The burgeoning innovations in this research field will benefit human society, especially during the COVID-19 epidemic, where cross-infection should be averted and contactless sensation is highly desired.

摘要

在过去十年中,全球对智能皮肤状电子器件的产业和研究关注推动了它们在包括人类医疗保健、物联网、人机界面、人工智能和软体机器人等不同领域的应用。其中,柔性湿度传感器凭借对湿度变化快速响应的独特特性,在非接触测量中发挥着至关重要的作用。这项工作概述了使用各种活性功能材料进行非接触监测的柔性湿度传感器的最新进展。基于电阻式、电容式、阻抗型和电压型工作机制,突出介绍了四类湿度传感器。此外,还介绍了包括化学掺杂、结构设计和焦耳加热在内的典型策略,以提高湿度传感器的性能。基于非接触感知能力,介绍了人类/植物医疗保健管理、人机交互以及基于集成湿度传感器的反馈系统。这一研究领域中蓬勃发展的创新将造福人类社会,特别是在新冠疫情期间,此时应避免交叉感染,非常需要非接触传感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3326/9307709/f037c770651f/40820_2022_895_Fig1_HTML.jpg

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