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先进储能器件:基本原理、分析方法及合理的材料设计

Advanced Energy Storage Devices: Basic Principles, Analytical Methods, and Rational Materials Design.

作者信息

Liu Jilei, Wang Jin, Xu Chaohe, Jiang Hao, Li Chunzhong, Zhang Lili, Lin Jianyi, Shen Ze Xiang

机构信息

Division of Physics and Applied Physics School of Physical and Mathematical Sciences Nanyang Technological University Singapore 637371 Singapore.

College of Aerospace Engineering Chongqing University Chongqing 400044 P. R. China.

出版信息

Adv Sci (Weinh). 2017 Nov 15;5(1):1700322. doi: 10.1002/advs.201700322. eCollection 2018 Jan.

Abstract

Tremendous efforts have been dedicated into the development of high-performance energy storage devices with nanoscale design and hybrid approaches. The boundary between the electrochemical capacitors and batteries becomes less distinctive. The same material may display capacitive or battery-like behavior depending on the electrode design and the charge storage guest ions. Therefore, the underlying mechanisms and the electrochemical processes occurring upon charge storage may be confusing for researchers who are new to the field as well as some of the chemists and material scientists already in the field. This review provides fundamentals of the similarities and differences between electrochemical capacitors and batteries from kinetic and material point of view. Basic techniques and analysis methods to distinguish the capacitive and battery-like behavior are discussed. Furthermore, guidelines for material selection, the state-of-the-art materials, and the electrode design rules to advanced electrode are proposed.

摘要

人们付出了巨大努力致力于开发具有纳米级设计和混合方法的高性能储能装置。电化学电容器和电池之间的界限变得不那么明显。根据电极设计和电荷存储客体离子,相同的材料可能表现出电容性行为或类似电池的行为。因此,对于该领域的新手以及该领域的一些化学家和材料科学家来说,电荷存储时发生的潜在机制和电化学过程可能会令人困惑。本综述从动力学和材料的角度提供了电化学电容器和电池之间异同的基本原理。讨论了区分电容性行为和类似电池行为的基本技术和分析方法。此外,还提出了材料选择指南、先进材料以及先进电极的电极设计规则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f68/5770679/739e1535e0b2/ADVS-5-na-g001.jpg

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