30 Years of Lithium‐Ion Batteries

30 лет литий-ионным аккумуляторам
Jun Lü, Khalil Amine, Zhongwei Chen, Matthew Li
2018-06-14

Li-metal anodesbeyond lithium-ion chemistrieselectrode materialslithium-ion batteriessurface coating and porosity
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.
1
Lithium-based battery development over 30 years progressed from early lithium-metal anodes to commercially established lithium-ion batteries.
2
Material science priorities shifted from solid-state physics in early research toward electrode morphology, including coatings, porosity, size, and shape, near the end of the twentieth century.
3
Modern battery research requires caution, and beyond-lithium-ion chemistries remain an important area for future development.
4
Technological shifts in lithium-ion battery development reflect changing material requirements, although the precise reasons for selecting next-generation electrode materials remain difficult to explain.
5
The review reconstructs the developmental history of lithium-ion batteries and identifies breakthroughs alongside setbacks that shaped commercialization.

Lithium-ion batteries (Li-based battery technologies)

The 30-year development of LIBs and the material-science factors, technological shifts, and design considerations underlying their evolution

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2018-06-14
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Authors
Jun Lü
Khalil Amine
Zhongwei Chen
Matthew Li
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