Wang Yang, Zhang Lina, Zhou Jinping, Lu Ang
College of Chemistry and Molecular Sciences , Wuhan University , Wuhan , Hubei 430072 , People's Republic of China.
Hubei Engineering Center of Natural Polymer-Based Medical Materials , Wuhan University , Wuhan , Hubei 430072 , People's Republic of China.
ACS Appl Mater Interfaces. 2020 Feb 12;12(6):7631-7638. doi: 10.1021/acsami.9b22754. Epub 2020 Jan 28.
A transparent and flexible cellulose/KOH composite ionic film (CKF) is fabricated as a humidity sensor. CKF exhibits high optical transmittance (87.14% at 550 nm), which has rarely been reported among humidity sensors as a result of the small pore size of the cellulose matrix caused by water-evaporation-induced dense packing and uniform distribution of amorphous KOH via simply soaking-drying. CKF also possesses flexibility and robust mechanical property. The conductive CKF shows fast and reversible real-time response to relative humidity (RH) in the 11.3-97.3% RH range with conductance varying over 200 times, response/recovery times of 6.0/10.8 s, which are shorter than the majority of the reported values, as well as a hysteresis error of 0.57%, which is significantly less than that reported in the literature. Furthermore, CKF is insensitive to both the temperature (10-70 °C) and pressure (0-120 kPa), indicating high selectivity as humidity sensors. In both the non-contact fingertip moisture detection and breathing rate detection, the flexible and transparent CKF-based humidity sensor responds favorably to RH change. Moreover, a flexible and transparent CKF-based wearable skin moisture detector is assembled to measure the moisture of human skin in different situations, whose measurement is very close to the commercial detector. The results offer real-time moisture information on human skin and demonstrate the potential of a CKF-based moisture detector as a promising modular component in integrated intelligent wearable equipment.
制备了一种透明且柔性的纤维素/氢氧化钾复合离子膜(CKF)作为湿度传感器。CKF具有高光学透过率(在550nm处为87.14%),由于水蒸发诱导的致密堆积导致纤维素基质孔径小以及通过简单浸泡干燥实现非晶态氢氧化钾的均匀分布,在湿度传感器中很少有这样的报道。CKF还具有柔韧性和强大的机械性能。导电的CKF在11.3 - 97.3%相对湿度(RH)范围内对相对湿度表现出快速且可逆的实时响应,电导率变化超过200倍,响应/恢复时间为6.0/10.8秒,这比大多数报道的值都短,并且滞后误差为0.57%,明显小于文献报道的值。此外,CKF对温度(10 - 70°C)和压力(0 - 120kPa)均不敏感,表明其作为湿度传感器具有高选择性。在非接触式指尖水分检测和呼吸速率检测中,基于柔性透明CKF的湿度传感器对RH变化响应良好。此外,组装了一种基于柔性透明CKF的可穿戴皮肤水分探测器,用于测量不同情况下人体皮肤的水分,其测量结果与商用探测器非常接近。这些结果提供了人体皮肤的实时水分信息,并证明了基于CKF的水分探测器作为集成智能可穿戴设备中一种有前景的模块化组件的潜力。