Pu Xiong, Hu Weiguo, Wang Zhong Lin
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 100083, China.
School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, GA, 30332-0245, USA.
Small. 2018 Jan;14(1). doi: 10.1002/smll.201702817. Epub 2017 Nov 30.
One major challenge for wearable electronics is that the state-of-the-art batteries are inadequate to provide sufficient energy for long-term operations, leading to inconvenient battery replacement or frequent recharging. Other than the pursuit of high energy density of secondary batteries, an alternative approach recently drawing intensive attention from the research community, is to integrate energy-generation and energy-storage devices into self-charging power systems (SCPSs), so that the scavenged energy can be simultaneously stored for sustainable power supply. This paper reviews recent developments in SCPSs with the integration of various energy-harvesting devices (including piezoelectric nanogenerators, triboelectric nanogenerators, solar cells, and thermoelectric nanogenerators) and energy-storage devices, such as batteries and supercapacitors. SCPSs with multiple energy-harvesting devices are also included. Emphasis is placed on integrated flexible or wearable SCPSs. Remaining challenges and perspectives are also examined to suggest how to bring the appealing SCPSs into practical applications in the near future.
可穿戴电子产品面临的一个主要挑战是,目前最先进的电池不足以提供足够的能量用于长期运行,导致电池更换不便或需要频繁充电。除了追求二次电池的高能量密度外,一种最近引起研究界广泛关注的替代方法是将能量产生和能量存储装置集成到自充电电源系统(SCPS)中,以便将收集到的能量同时存储起来,实现可持续供电。本文综述了SCPS的最新进展,这些系统集成了各种能量收集装置(包括压电纳米发电机、摩擦电纳米发电机、太阳能电池和热电纳米发电机)以及电池和超级电容器等能量存储装置。还包括具有多个能量收集装置的SCPS。重点是集成的柔性或可穿戴SCPS。此外,还探讨了剩余的挑战和前景,以提出如何在不久的将来将引人注目的SCPS应用于实际。