论文标题
超快湿度传感器,基于液相去角质石墨烯
Ultrafast humidity sensor based on liquid phase exfoliated graphene
论文作者
论文摘要
湿度感知对各种技术和行业很重要,从环境和工业监测到医疗应用。尽管湿度传感器比比皆是,但很少有可用的解决方案薄,透明,与大面积传感器的生产兼容,并且几乎没有一个可以通过呼吸检测或通过皮肤湿度传感进行实时的手指接近监测来进行人类呼吸监测。这项工作描述了基于化学石墨烯的湿度传感器,该湿度传感器以几个步骤生产,并具有易于液相剥落(LPE),然后是Langmuir-Blodgett组件,可实现几乎任何尺寸的活动区域。石墨烯传感器提供了性能参数的独特组合,表现出较高的湿度,相对湿度(RH)水平的线性性能在8%至95%之间的变化,对其他空气其他成分,灵活性,近80%的透明度,近80%和响应时间的响应较弱。对湿度的快速响应被证明可用于呼吸监测和实时手指接近度检测,并在柔性无触摸交互式面板中使用潜在的应用。
Humidity sensing is important to a variety of technologies and industries, ranging from environmental and industrial monitoring to medical applications. Although humidity sensors abound, few available solutions are thin, transparent, compatible with large-area sensor production and flexible, and almost none are fast enough to perform human respiration monitoring through breath detection or real-time finger proximity monitoring via skin humidity sensing. This work describes chemiresistive graphene-based humidity sensors produced in few steps with facile liquid phase exfoliation (LPE) followed by Langmuir-Blodgett assembly that enables active areas of practically any size. The graphene sensors provide a unique mix of performance parameters, exhibiting resistance changes up to 10% with varying humidity, linear performance over relative humidity (RH) levels between 8% and 95%, weak response to other constituents of air, flexibility, transparency of nearly 80%, and response times of 30 ms. The fast response to humidity is shown to be useful for respiration monitoring and real-time finger proximity detection, with potential applications in flexible touchless interactive panels.