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铁电极化与氧空位协同诱导出一种用于多功能应用的超灵敏快速湿度传感器。

Ferroelectric Polarization and Oxygen Vacancy Synergistically Induced an Ultrasensitive and Fast Humidity Sensor for Multifunctional Applications.

作者信息

Chen Xinyi, Liu Cheng, Hua Zhongqiu, Ma Nan

机构信息

CAS Key Laboratory of Inorganic Functional Materials and Devices, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai201899, China.

Tianjin Key Laboratory of Electronic Materials and Devices, School of Electronics and Information Engineering, Hebei University of Technology, Tianjin300401, China.

出版信息

ACS Appl Mater Interfaces. 2022 Oct 26. doi: 10.1021/acsami.2c14332.

Abstract

With the arrival of the Internet of Things and artificial intelligence, humidity sensors monitoring water emissions from human metabolism have attracted great attention in the fields of smart wearable devices and noncontact human-machine interaction. However, their application is seriously limited by the trade-off between the sensitivity and response speed for traditional humidity sensors. Herein, to overcome it, a self-powered high performance humidity sensor is developed on the basis of the electric-poled and oxygen vacancy-rich BiFeO (BFO) ferroelectric material. The synergistic effect of ferroelectric polarization and oxygen vacancy provides a strong driving force and active adsorption sites for an abundance of OH/HO adsorption, resulting in an ultrahigh response (∼10) and ultrafast response/recovery speed (∼84/376 ms). Benefiting from its promising advantages, the wearable humidity sensor can accurately record the respiration rate/depth and recognize different human respiratory behaviors in real-time. Importantly, by utilizing the moisture from mouth-blowing and skin, the sensors are successfully applied to noncontact control of a robotic car, noncontact switch, and noncontact interface for visualization applications. This work provides an effective strategy for developing excellent humidity sensors that meet the requirement of noncontact interaction for next-generation intelligent electronics.

摘要

随着物联网和人工智能的到来,监测人体新陈代谢水分排放的湿度传感器在智能可穿戴设备和非接触式人机交互领域引起了极大关注。然而,传统湿度传感器的灵敏度和响应速度之间的权衡严重限制了它们的应用。在此,为了克服这一问题,基于电场极化且富含氧空位的BiFeO(BFO)铁电材料开发了一种自供电高性能湿度传感器。铁电极化和氧空位的协同效应为大量OH/HO吸附提供了强大的驱动力和活性吸附位点,从而实现了超高响应(约10)和超快响应/恢复速度(约84/376毫秒)。得益于其突出优势,可穿戴湿度传感器能够准确记录呼吸频率/深度,并实时识别不同的人类呼吸行为。重要的是,通过利用吹气和皮肤的水分,这些传感器成功应用于遥控汽车的非接触控制、非接触开关以及可视化应用的非接触界面。这项工作为开发满足下一代智能电子非接触交互需求的优异湿度传感器提供了有效策略。

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