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锂离子电池的三十年。

30 Years of Lithium-Ion Batteries.

作者信息

Li Matthew, Lu Jun, Chen Zhongwei, Amine Khalil

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory, 9700 Cass Ave, Lemont, IL, 60439, USA.

Department of Chemical Engineering, Waterloo Institute of Nanotechnology, University of Waterloo, 200 University Ave West, Waterloo, ON, N2L 3G1, Canada.

出版信息

Adv Mater. 2018 Jun 14:e1800561. doi: 10.1002/adma.201800561.

Abstract

Over the past 30 years, significant commercial and academic progress has been made on Li-based battery technologies. From the early Li-metal anode iterations to the current commercial Li-ion batteries (LIBs), the story of the Li-based battery is full of breakthroughs and back tracing steps. This review will discuss the main roles of material science in the development of LIBs. As LIB research progresses and the materials of interest change, different emphases on the different subdisciplines of material science are placed. Early works on LIBs focus more on solid state physics whereas near the end of the 20th century, researchers began to focus more on the morphological aspects (surface coating, porosity, size, and shape) of electrode materials. While it is easy to point out which specific cathode and anode materials are currently good candidates for the next-generation of batteries, it is difficult to explain exactly why those are chosen. In this review, for the reader a complete developmental story of LIB should be clearly drawn, along with an explanation of the reasons responsible for the various technological shifts. The review will end with a statement of caution for the current modern battery research along with a brief discussion on beyond lithium-ion battery chemistries.

摘要

在过去30年里,锂基电池技术取得了重大的商业和学术进展。从早期的锂金属阳极迭代到目前的商用锂离子电池(LIBs),锂基电池的发展历程充满了突破和曲折。本文将讨论材料科学在锂离子电池发展中的主要作用。随着锂离子电池研究的进展以及感兴趣的材料发生变化,材料科学不同子学科的侧重点也有所不同。早期的锂离子电池研究更多地关注固态物理,而在20世纪末,研究人员开始更多地关注电极材料的形态学方面(表面涂层、孔隙率、尺寸和形状)。虽然很容易指出哪些特定的阴极和阳极材料目前是下一代电池的良好候选材料,但很难确切解释为什么选择这些材料。在本文中,应为读者清晰地勾勒出锂离子电池完整的发展历程,并解释导致各种技术转变的原因。本文将以对当前现代电池研究的警示声明以及对超越锂离子电池化学的简要讨论作为结尾。

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