Center for Green Innovation, School of Mathematics and Physics, University of Science and Technology Beijing, Beijing 100083, China.
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 100083, China.
Biosensors (Basel). 2023 Jun 1;13(6):604. doi: 10.3390/bios13060604.
Triboelectric nanogenerators (TENGs) have revolutionized energy harvesting and active sensing, holding tremendous potential in personalized healthcare, sustainable diagnoses, and green energy applications. In these scenarios, conductive polymers play a vital role in enhancing the performance of both TENG and TENG-based biosensors, enabling the development of flexible, wearable, and highly sensitive diagnostic devices. This review summarizes the impact of conductive polymers on TENG-based sensors, focusing on their contributions to triboelectric properties, sensitivity, detection limits, and wearability. We discuss various strategies for incorporating conductive polymers into TENG-based biosensors, promoting the creation of innovative and customizable devices tailored for specific healthcare applications. Additionally, we consider the potential of integrating TENG-based sensors with energy storage devices, signal conditioning circuits, and wireless communication modules, ultimately leading to the development of advanced, self-powered diagnostic systems. Finally, we outline the challenges and future directions in developing TENGs that integrate conducting polymers for personalized healthcare, emphasizing the need to improve biocompatibility, stability, and device integration for practical applications.
摩擦纳米发电机(TENG)在能量收集和主动传感领域引发了一场革命,在个性化医疗保健、可持续诊断和绿色能源应用方面具有巨大的潜力。在这些情况下,导电聚合物在增强 TENG 和基于 TENG 的生物传感器的性能方面发挥着至关重要的作用,使灵活、可穿戴和高灵敏度诊断设备的开发成为可能。本文综述了导电聚合物对基于 TENG 的传感器的影响,重点讨论了它们对摩擦电性能、灵敏度、检测限和可穿戴性的贡献。我们讨论了将导电聚合物纳入基于 TENG 的生物传感器的各种策略,以促进针对特定医疗保健应用的创新和定制设备的创建。此外,我们还考虑了将基于 TENG 的传感器与能量存储设备、信号调理电路和无线通信模块集成的潜力,最终实现先进的自供电诊断系统的发展。最后,我们概述了为个性化医疗保健开发集成导电聚合物的 TENG 所面临的挑战和未来方向,强调了需要提高生物相容性、稳定性和设备集成度,以实现实际应用。