State Key Laboratory of Optoelectronic Materials and Technologies and the Guangdong Province Key Laboratory of Display Material and Technology, School of Electronics and Information Technology , Sun Yat-sen University , Guangzhou 510275 , China.
College of Electronic Science and Technology , Shenzhen University , 3688 Nanhai Boulevard , Shenzhen 518060 , China.
ACS Appl Mater Interfaces. 2019 Jan 30;11(4):4242-4251. doi: 10.1021/acsami.8b18599. Epub 2019 Jan 17.
Carbon nanocoils (CNCs) are employed to fabricate fast, high-resolution, and reversible humidity sensor based on a flexible liquid crystal polymer (LCP) substrate. The humidity sensor displays fast-response (1.9 s) and recovery time (1.5 s), a broad relative humidity (RH) detection range (4-95%), linearity, repeatability, and stability. The rapid response and recovery are considered to benefit from the hydrophobic effect of the LCP substrate and high purity of the CNCs, which give rise to weak physical adsorption. Meanwhile, the high sensitivity results from both the unique helical structure of CNCs and the microporous structure of the LCP substrate. The distinctive structure-related properties enable the sensor to reliably perceive an extremely small RH variation of 0.8%, which is too small to be detected by most humidity sensors reported previously. These features allow the sensor to monitor a variety of important human activities, such as respiration, speaking, blowing, and noncontact fingertip sensation, accurately. Furthermore, different human physical conditions can be distinguished by recognizing the respiration response patterns. In addition, the long-term operation and mechanical bending do not adversely affect the sensing performance.
碳纳米螺旋管(CNCs)被用于制造快速、高分辨率且可还原的湿度传感器,该传感器基于柔性液晶聚合物(LCP)基底。湿度传感器具有快速响应(1.9 秒)和恢复时间(1.5 秒)、宽相对湿度(RH)检测范围(4-95%)、线性度、重复性和稳定性。快速响应和恢复归因于 LCP 基底的疏水性和 CNCs 的高纯度,这导致了较弱的物理吸附。同时,高灵敏度源于 CNCs 的独特螺旋结构和 LCP 基底的微孔结构。独特的结构相关特性使传感器能够可靠地感知极其微小的 RH 变化,低至 0.8%,这是之前大多数报道的湿度传感器无法检测到的。这些特性使传感器能够准确地监测各种重要的人类活动,如呼吸、说话、吹气和非接触指尖感觉。此外,可以通过识别呼吸响应模式来区分不同的人体物理状况。此外,长期运行和机械弯曲不会对传感性能产生不利影响。