Zuo Wenhua, Li Ruizhi, Zhou Cheng, Li Yuanyuan, Xia Jianlong, Liu Jinping
School of Chemistry Chemical Engineering and Life Science and State Key Laboratory of Advanced Technology for Materials Synthesis and Processing Wuhan University of Technology Wuhan Hubei 430070 P. R. China.
Institute of Nanoscience and Nanotechnology Department of Physics, Central China Normal University Wuhan Hubei 430079 P. R. China.
Adv Sci (Weinh). 2017 Feb 21;4(7):1600539. doi: 10.1002/advs.201600539. eCollection 2017 Jul.
Design and fabrication of electrochemical energy storage systems with both high energy and power densities as well as long cycling life is of great importance. As one of these systems, Battery-supercapacitor hybrid device (BSH) is typically constructed with a high-capacity battery-type electrode and a high-rate capacitive electrode, which has attracted enormous attention due to its potential applications in future electric vehicles, smart electric grids, and even miniaturized electronic/optoelectronic devices, etc. With proper design, BSH will provide unique advantages such as high performance, cheapness, safety, and environmental friendliness. This review first addresses the fundamental scientific principle, structure, and possible classification of BSHs, and then reviews the recent advances on various existing and emerging BSHs such as Li-/Na-ion BSHs, acidic/alkaline BSHs, BSH with redox electrolytes, and BSH with pseudocapacitive electrode, with the focus on materials and electrochemical performances. Furthermore, recent progresses in BSH devices with specific functionalities of flexibility and transparency, etc. will be highlighted. Finally, the future developing trends and directions as well as the challenges will also be discussed; especially, two conceptual BSHs with aqueous high voltage window and integrated 3D electrode/electrolyte architecture will be proposed.
设计和制造兼具高能量密度、高功率密度以及长循环寿命的电化学储能系统至关重要。作为这类系统之一的电池 - 超级电容器混合装置(BSH),通常由高容量的电池型电极和高倍率电容性电极构成,因其在未来电动汽车、智能电网乃至小型化电子/光电器件等方面的潜在应用而备受关注。通过合理设计,BSH将具备高性能、低成本、安全以及环境友好等独特优势。本文综述首先阐述了BSH的基本科学原理、结构及可能的分类,接着回顾了各种现有和新兴的BSH的最新进展,如锂/钠离子BSH、酸性/碱性BSH、含氧化还原电解质的BSH以及含赝电容电极的BSH,重点关注材料和电化学性能。此外,还将突出具有柔韧性和透明性等特定功能的BSH器件的最新进展。最后,也将讨论未来的发展趋势和方向以及挑战;特别地,将提出两种具有水性高电压窗口和集成3D电极/电解质结构的概念性BSH。