Li Chengwei, Zhang Yifeng, Yang Shuaitao, Zhao Huitong, Guo Yuan, Cong Tianze, Huang Hui, Fan Zeng, Liang Hongwei, Pan Lujun
School of Physics, Dalian University of Technology, No. 2 Linggong Road, Ganjingzi District, Dalian 116024, P. R. China.
School of Microelectronics, Dalian University of Technology, Dalian, Liaoning 116024, P. R. China.
Nanoscale. 2022 May 16;14(18):7025-7038. doi: 10.1039/d2nr00027j.
A flexible humidity sensor based on a tissue-carbon nanocoil (CNC)-carbon nanotube (CNT) composite has been investigated. Taking advantage of the excellent water absorption of tissue and the electrical sensitivity of CNCs/CNTs to humidity, this humidity sensor obtains outstanding humidity sensing performance, including a wide sensing range of 10-90% RH, a maximum response value of 492% (Δ/) at 90% RH, a maximum sensitivity of 6.16%/% RH, a good long-time stability of more than 7 days, a high humidity resolution accuracy of less than 1% RH and a fast response time of 275 ms. Furthermore, the sensor also exhibits robust bending (with a curvature of 0.322 cm) and folding (up to 500 times) durability, and after being made into a complex "thousand paper crane" shape it still provides stable humidity sensing performance. As a proof of concept, this humidity sensor demonstrates excellent responsivity to human breath monitoring, non-contact fingertip humidity detection, water boiling detection and air humidity monitoring, indicating great potential in the fields of wearable devices, weather forecasting systems and other intelligent humidity monitoring devices.
一种基于组织 - 碳纳米线圈(CNC)- 碳纳米管(CNT)复合材料的柔性湿度传感器已被研究。利用组织优异的吸水性以及CNCs/CNTs对湿度的电敏感性,该湿度传感器获得了出色的湿度传感性能,包括10 - 90%RH的宽传感范围、在90%RH时492%(Δ/)的最大响应值、6.16%/%RH的最大灵敏度、超过7天的良好长期稳定性、小于1%RH的高湿度分辨率精度以及275毫秒的快速响应时间。此外,该传感器还表现出强大的弯曲(曲率为0.322厘米)和折叠(高达500次)耐久性,并且在制成复杂的“千纸鹤”形状后仍能提供稳定的湿度传感性能。作为概念验证,这种湿度传感器在人体呼吸监测、非接触式指尖湿度检测、水沸腾检测和空气湿度监测方面表现出优异的响应性,表明其在可穿戴设备、天气预报系统和其他智能湿度监测设备领域具有巨大潜力。