J Varma Sreekanth, Sambath Kumar Kowsik, Seal Sudipta, Rajaraman Swaminathan, Thomas Jayan
NanoScience Technology Center University of Central Florida Orlando FL 32826 USA.
Department of Materials Science & Engineering University of Central Florida Orlando FL 32826 USA.
Adv Sci (Weinh). 2018 Jun 17;5(9):1800340. doi: 10.1002/advs.201800340. eCollection 2018 Sep.
Wearable electronic devices represent a paradigm change in consumer electronics, on-body sensing, artificial skins, and wearable communication and entertainment. Because all these electronic devices require energy to operate, wearable energy systems are an integral part of wearable devices. Essentially, the electrodes and other components present in these energy devices should be mechanically strong, flexible, lightweight, and comfortable to the user. Presented here is a critical review of those materials and devices developed for energy conversion and storage applications with an objective to be used in wearable devices. The focus is mainly on the advances made in the field of solar cells, triboelectric generators, Li-ion batteries, and supercapacitors for wearable device development. As these devices need to be attached/integrated with the fabric, the discussion is limited to devices made in the form of ribbons, filaments, and fibers. Some of the important challenges and future directions to be pursued are also highlighted.
可穿戴电子设备代表了消费电子、人体传感、人造皮肤以及可穿戴通信和娱乐领域的范式转变。由于所有这些电子设备都需要能量来运行,可穿戴能源系统是可穿戴设备不可或缺的一部分。从本质上讲,这些能源设备中存在的电极和其他组件应具有机械强度、柔韧性、轻便性,并且对用户来说要舒适。本文对为能量转换和存储应用而开发的、旨在用于可穿戴设备的材料和设备进行了批判性综述。重点主要放在用于可穿戴设备开发的太阳能电池、摩擦发电机、锂离子电池和超级电容器领域所取得的进展上。由于这些设备需要与织物附着/集成,因此讨论仅限于带状、丝状和纤维状的设备。还强调了一些重要的挑战和未来要追求的方向。