Shen Daozhi, Xiao Ming, Xiao Yu, Zou Guisheng, Hu Lifang, Zhao Bo, Liu Lei, Duley Walter W, Zhou Y Norman
Department of Mechanical Engineering, State Key Laboratory of Tribology , Tsinghua University , Beijing 100084 , P. R. China.
ACS Appl Mater Interfaces. 2019 Apr 17;11(15):14249-14255. doi: 10.1021/acsami.9b01523. Epub 2019 Apr 3.
Most advanced humidity sensors are powered by batteries that need regular charging and replacement, causing environmental problems and complicated management issues. This paradigm has been overcome through the development of new technology based on the concept of simple, self-powered, rapid-response, flexible humidity sensors enabled by the properties of densely packed titanium dioxide (TiO) nanowire networks. These sensors eliminate the need for an external power source and produce an output voltage that can be readily related to ambient humidity level over a wide range of ambient conditions. They are characterized by rapid response and relaxation times (typically 4.5 and 2.8 s, respectively). These units are mechanically flexible and maintain a constant voltage output after 10 000 bending cycles. This new type of humidity sensor is easily attached to a human finger for use in the monitoring of ambient humidity level in the environment around human skin, near wet objects, or in the presence of moist materials. The unique properties of this new self-powered wearable humidity sensor technology open up a variety of new applications, including the development of electronic skin, personal healthcare products, and smart tracking in the future Internet-of-things.
大多数先进的湿度传感器由需要定期充电和更换的电池供电,这会导致环境问题和复杂的管理问题。基于紧密堆积的二氧化钛(TiO)纳米线网络的特性,通过开发简单、自供电、快速响应、灵活的湿度传感器这一新技术概念,克服了这一模式。这些传感器无需外部电源,并能产生一个在广泛的环境条件下都能与环境湿度水平直接相关的输出电压。它们的特点是响应和弛豫时间很快(通常分别为4.5秒和2.8秒)。这些装置具有机械柔韧性,在10000次弯曲循环后仍能保持恒定的电压输出。这种新型湿度传感器很容易附着在人的手指上,用于监测人体皮肤周围环境、靠近潮湿物体处或存在潮湿材料时的环境湿度水平。这种新型自供电可穿戴湿度传感器技术的独特性能开启了多种新应用,包括未来物联网中电子皮肤、个人医疗保健产品和智能跟踪的开发。