Luo Yibing, Li Jianye, Ding Qiongling, Wang Hao, Liu Chuan, Wu Jin
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, People's Republic of China.
Nanomicro Lett. 2023 May 24;15(1):136. doi: 10.1007/s40820-023-01109-2.
Breathing is an inherent human activity; however, the composition of the air we inhale and gas exhale remains unknown to us. To address this, wearable vapor sensors can help people monitor air composition in real time to avoid underlying risks, and for the early detection and treatment of diseases for home healthcare. Hydrogels with three-dimensional polymer networks and large amounts of water molecules are naturally flexible and stretchable. Functionalized hydrogels are intrinsically conductive, self-healing, self-adhesive, biocompatible, and room-temperature sensitive. Compared with traditional rigid vapor sensors, hydrogel-based gas and humidity sensors can directly fit human skin or clothing, and are more suitable for real-time monitoring of personal health and safety. In this review, current studies on hydrogel-based vapor sensors are investigated. The required properties and optimization methods of wearable hydrogel-based sensors are introduced. Subsequently, existing reports on the response mechanisms of hydrogel-based gas and humidity sensors are summarized. Related works on hydrogel-based vapor sensors for their application in personal health and safety monitoring are presented. Moreover, the potential of hydrogels in the field of vapor sensing is elucidated. Finally, the current research status, challenges, and future trends of hydrogel gas/humidity sensing are discussed.
呼吸是人类的一项固有活动;然而,我们吸入和呼出的空气成分对我们来说仍然是未知的。为了解决这个问题,可穿戴式蒸汽传感器可以帮助人们实时监测空气成分,以避免潜在风险,并用于家庭医疗保健中疾病的早期检测和治疗。具有三维聚合物网络和大量水分子的水凝胶具有天然的柔韧性和可拉伸性。功能化水凝胶具有本征导电性、自愈合性、自粘性、生物相容性和室温敏感性。与传统的刚性蒸汽传感器相比,基于水凝胶的气体和湿度传感器可以直接贴合人体皮肤或衣物,更适合于实时监测个人健康和安全。在这篇综述中,对目前基于水凝胶的蒸汽传感器的研究进行了调查。介绍了可穿戴式水凝胶基传感器所需的性能和优化方法。随后,总结了关于水凝胶基气体和湿度传感器响应机制的现有报道。介绍了基于水凝胶的蒸汽传感器在个人健康和安全监测中的相关应用工作。此外,阐明了水凝胶在蒸汽传感领域的潜力。最后,讨论了水凝胶气体/湿度传感的当前研究现状、挑战和未来趋势。