State Key Laboratory of Tribology, Tsinghua University, Beijing, 100084, P. R. China.
Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.
Adv Mater. 2018 May;30(18):e1705925. doi: 10.1002/adma.201705925. Epub 2018 Mar 24.
Most state-of-the-art electronic wearable sensors are powered by batteries that require regular charging and eventual replacement, which would cause environmental issues and complex management problems. Here, a device concept is reported that can break this paradigm in ambient moisture monitoring-a new class of simple sensors themselves can generate moisture-dependent voltage that can be used to determine the ambient humidity level directly. It is demonstrated that a moisture-driven electrical generator, based on the diffusive flow of water in titanium dioxide (TiO ) nanowire networks, can yield an output power density of up to 4 µW cm when exposed to a highly moist environment. This performance is two orders of magnitude better than that reported for carbon-black generators. The output voltage is strongly dependent on humidity of ambient environment. As a big breakthrough, this new type of device is successfully used as self-powered wearable human-breathing monitors and touch pads, which is not achievable by any existing moisture-induced-electricity technology. The availability of high-output self-powered electrical generators will facilitate the design and application of a wide range of new innovative flexible electronic devices.
大多数最先进的电子可穿戴传感器都由需要定期充电和最终更换的电池供电,这会造成环境问题和复杂的管理问题。在这里,报告了一种设备概念,它可以打破环境湿度监测中的这一模式——一类新的简单传感器本身可以产生依赖于湿度的电压,可用于直接确定环境湿度水平。结果表明,基于二氧化钛 (TiO ) 纳米线网络中水分的扩散流的湿气驱动发电机,在暴露于高湿度环境时,可产生高达 4 µW cm 的输出功率密度。这种性能比报道的碳黑发电机好两个数量级。输出电压强烈依赖于环境湿度。作为一个重大突破,这种新型器件成功地用作自供电可穿戴人体呼吸监测器和触摸板,这是任何现有湿度致动发电技术都无法实现的。高输出自供电发电机的可用性将促进各种新型创新柔性电子设备的设计和应用。