Kamilya Tapas, Park Jinhyoung
School of Mechatronics Engineering, Korea University of Technology and Education, Cheonan-si 1600, Republic of Korea.
Micromachines (Basel). 2022 Nov 25;13(12):2065. doi: 10.3390/mi13122065.
The triboelectric nanogenerator (TENG) is a promising research topic for the conversion of mechanical to electrical energy and its application in different fields. Among the various applications, self-powered bio-medical sensing application has become popular. The selection of a wide variety of materials and the simple design of devices has made it attractive for the applications of real-time self-powered healthcare sensing systems. Human activity is the source of mechanical energy which gets converted to electrical energy by TENG fitted to different body parts for the powering up of the biomedical sensing and detection systems. Among the various techniques, wearable sensing systems developed by TENG have shown their merit in the application of healthcare sensing and detection systems. Some key studies on wearable self-powered biomedical sensing systems based on TENG which have been carried out in the last seven years are summarized here. Furthermore, the key features responsible for the highly sensitive output of the self-powered sensors have been briefed. On the other hand, the challenges that need to be addressed for the commercialization of TENG-based biomedical sensors have been raised in order to develop versatile sensitive sensors, user-friendly devices, and to ensure the stability of the device over changing environments.
摩擦纳米发电机(TENG)是一个很有前景的研究课题,用于将机械能转化为电能及其在不同领域的应用。在各种应用中,自供电生物医学传感应用已变得很流行。多种材料的选择和器件的简单设计使其对实时自供电医疗传感系统的应用具有吸引力。人体活动是机械能的来源,通过安装在不同身体部位的TENG将其转化为电能,为生物医学传感和检测系统供电。在各种技术中,由TENG开发的可穿戴传感系统在医疗传感和检测系统的应用中已显示出其优点。本文总结了过去七年中基于TENG的可穿戴自供电生物医学传感系统的一些关键研究。此外,还简要介绍了自供电传感器高灵敏度输出的关键特性。另一方面,为了开发多功能灵敏传感器、用户友好型设备并确保设备在变化环境中的稳定性,提出了基于TENG的生物医学传感器商业化需要解决的挑战。