Zhang Dongzhi, Zhou Lina, Wu Yan, Yang Chunqing, Zhang Hao
College of Control Science and Engineering, China University of Petroleum (East China), Qingdao, 266580, China.
Small. 2024 Dec;20(51):e2406964. doi: 10.1002/smll.202406964. Epub 2024 Oct 8.
With the continuous acceleration of industrialization, gas sensors are evolving to become portable, wearable and environmentally friendly. However, traditional gas sensors rely on external power supply, which severely limits their applications in various industries. As an innovative and environmentally adaptable power generation technology, triboelectric nanogenerators (TENGs) can be integrated with gas sensors to leverage the benefits of both technologies for efficient and environmentally friendly self-powered gas sensing. This paper delves into the basic principles and current research frontiers of the TENG-based self-powered gas sensor, focusing particularly on innovative applications in environmental safety monitoring, healthcare, as well as emerging fields such as food safety assurance and smart agriculture. It emphasizes the significant advantages of TENG-based self-powered gas sensor systems in promoting environmental sustainability, achieving efficient sensing at room temperature, and driving technological innovations in wearable devices. It also objectively analyzes the technical challenges, including issues related to performance enhancement, theoretical refinement, and application expansion, and provides targeted strategies and future research directions aimed at paving the way for continuous progress and widespread applications in the field of self-powered gas sensors.
随着工业化进程的不断加速,气体传感器正朝着便携式、可穿戴式和环保型方向发展。然而,传统气体传感器依赖外部电源,这严重限制了它们在各个行业的应用。作为一种创新且适应环境的发电技术,摩擦纳米发电机(TENGs)可与气体传感器集成,以利用这两种技术的优势实现高效且环保的自供电气体传感。本文深入探讨了基于TENG的自供电气体传感器的基本原理和当前研究前沿,特别关注其在环境安全监测、医疗保健以及食品安全保障和智能农业等新兴领域的创新应用。它强调了基于TENG的自供电气体传感器系统在促进环境可持续性、在室温下实现高效传感以及推动可穿戴设备技术创新方面的显著优势。它还客观分析了技术挑战,包括与性能提升、理论完善和应用扩展相关的问题,并提供了有针对性的策略和未来研究方向,旨在为自供电气体传感器领域的持续进步和广泛应用铺平道路。