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Toward Practical High‐Energy and High‐Power Lithium Battery Anodes: Present and Future
by
Yang, Chunpeng
, Zheng, Zijian
, Wang, Caoyu
in
Alloys
/ Consumer electronics
/ Copyright
/ Electric vehicles
/ Electrodes
/ Electrolytes
/ Energy
/ Fluorides
/ Graphite
/ high energy
/ Li anodes
/ Li batteries
/ Lithium
/ Molecular weight
/ P anodes
/ R&D
/ Research & development
/ Review
/ Reviews
/ Si anodes
2022
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Toward Practical High‐Energy and High‐Power Lithium Battery Anodes: Present and Future
by
Yang, Chunpeng
, Zheng, Zijian
, Wang, Caoyu
in
Alloys
/ Consumer electronics
/ Copyright
/ Electric vehicles
/ Electrodes
/ Electrolytes
/ Energy
/ Fluorides
/ Graphite
/ high energy
/ Li anodes
/ Li batteries
/ Lithium
/ Molecular weight
/ P anodes
/ R&D
/ Research & development
/ Review
/ Reviews
/ Si anodes
2022
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Do you wish to request the book?
Toward Practical High‐Energy and High‐Power Lithium Battery Anodes: Present and Future
by
Yang, Chunpeng
, Zheng, Zijian
, Wang, Caoyu
in
Alloys
/ Consumer electronics
/ Copyright
/ Electric vehicles
/ Electrodes
/ Electrolytes
/ Energy
/ Fluorides
/ Graphite
/ high energy
/ Li anodes
/ Li batteries
/ Lithium
/ Molecular weight
/ P anodes
/ R&D
/ Research & development
/ Review
/ Reviews
/ Si anodes
2022
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Toward Practical High‐Energy and High‐Power Lithium Battery Anodes: Present and Future
Journal Article
Toward Practical High‐Energy and High‐Power Lithium Battery Anodes: Present and Future
2022
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Overview
Lithium batteries are key components of portable devices and electric vehicles due to their high energy density and long cycle life. To meet the increasing requirements of electric devices, however, energy density of Li batteries needs to be further improved. Anode materials, as a key component of the Li batteries, have a remarkable effect on the increase of the overall energy density. At present, various anode materials including Li anodes, high‐capacity alloy‐type anode materials, phosphorus‐based anodes, and silicon anodes have shown great potential for Li batteries. Composite‐structure anode materials will be further developed to cater to the growing demands for electrochemical storage devices with high‐energy‐density and high‐power‐density. In this review, the latest progress in the development of high‐energy Li batteries focusing on high‐energy‐capacity anode materials has been summarized in detail. In addition, the challenges for the rational design of current Li battery anodes and the future trends are also presented. The increasing development of battery‐powered vehicles for exceeding 500 km endurance has stimulated the exploration of lithium‐ion batteries with high‐energy‐density and high‐power‐density. In this review, proximate developments in various types of high specific energy lithium‐ion batteries are screened, focusing on silicon‐based anode, phosphorus‐based anode, lithium metal anode, and hybrid anode systems.
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