Li-ion battery materials: present and future

Материалы для литий-ионных аккумуляторов: настоящее и будущее
Feixiang Wu, Gleb Yushin, Naoki Nitta, Jung Tae Lee
2014-11-24

alloying anodesconversion materialsintercalation materialslithium-ion battery electrodespolyanion cathodes
This review covers key technological developments and scientific challenges for a broad range of Li-ion battery electrodes. Periodic table and potential/capacity plots are used to compare many families of suitable materials. Performance characteristics, current limitations, and recent breakthroughs in the development of commercial intercalation materials such as lithium cobalt oxide (LCO), lithium nickel cobalt manganese oxide (NCM), lithium nickel cobalt aluminum oxide (NCA), lithium iron phosphate (LFP), lithium titanium oxide (LTO) and others are contrasted with that of conversion materials, such as alloying anodes (Si, Ge, Sn, etc.), chalcogenides (S, Se, Te), and metal halides (F, Cl, Br, I). New polyanion cathode materials are also discussed. The cost, abundance, safety, Li and electron transport, volumetric expansion, material dissolution, and surface reactions for each type of electrode materials are described. Both general and specific strategies to overcome the current challenges are covered and categorized.
1
Commercial intercalation materials, including LCO, NCM, NCA, LFP, and LTO, are evaluated against conversion materials such as alloying anodes, chalcogenides, and metal halides.
2
Electrode materials are contrasted according to cost, elemental abundance, safety, lithium and electron transport, volumetric expansion, dissolution, and surface reactions.
3
General and chemistry-specific strategies are categorized to address the principal challenges limiting advanced lithium-ion battery electrodes.
4
The review identifies current limitations and recent breakthroughs across established and emerging electrode chemistries, including new polyanion cathodes.
5
The review systematically compares a broad range of lithium-ion battery electrode families using periodic-table and potential/capacity analyses.

Li-ion battery electrode materials, including commercial intercalation electrodes, conversion materials, and polyanion cathodes

Performance characteristics, limitations, breakthroughs, and strategies for overcoming challenges related to cost, abundance, safety, Li and electron transport, volumetric expansion, dissolution, and surface reactions

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2014-11-24
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Authors
Feixiang Wu
Gleb Yushin
Naoki Nitta
Jung Tae Lee
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