High‐Energy Lithium‐Ion Batteries: Recent Progress and a Promising Future in Applications

Литий-ионные аккумуляторы с высокой энергоёмкостью: последние достижения и перспективы применения
Shujiang Ding, Jingjing Xu, Shirong Lu, Xingyun Cai, Songming Cai, Yaxin Shao, Chao Hu
2022-06-08

electric vehiclesenergy densityhigh-capacity electrode materialshigh-energy lithium-ion batteriesintegrated battery systems
It is of great significance to develop clean and new energy sources with high‐efficient energy storage technologies, due to the excessive use of fossil energy that has caused severe environmental damage. There is great interest in exploring advanced rechargeable lithium batteries with desirable energy and power capabilities for applications in portable electronics, smart grids, and electric vehicles. In practice, high‐capacity and low‐cost electrode materials play an important role in sustaining the progresses in lithium‐ion batteries. This review aims at giving an account of recent advances on the emerging high‐capacity electrode materials and summarizing key barriers and corresponding strategies for the practical viability of these electrode materials. Effective approaches to enhance energy density of lithium‐ion batteries are to increase the capacity of electrode materials and the output operation voltage. On account of major bottlenecks of the power lithium‐ion battery, authors come up with the concept of integrated battery systems, which will be a promising future for high‐energy lithium‐ion batteries to improve energy density and alleviate anxiety of electric vehicles.
1
High-energy lithium-ion batteries are positioned as important technologies for portable electronics, smart grids, and electric vehicles.
2
Increasing electrode capacity and battery operating voltage are identified as effective strategies for improving lithium-ion battery energy density.
3
Integrated battery systems are proposed as a promising approach to improve energy density and reduce electric-vehicle range anxiety.
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Practical deployment requires addressing key barriers affecting the viability of high-capacity, low-cost electrode materials.
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The review surveys emerging high-capacity electrode materials for advancing high-energy lithium-ion batteries.

High-energy lithium-ion batteries and their high-capacity electrode materials

Recent advances, key barriers, and strategies for improving energy density, power capability, and practical viability through increased electrode capacity, higher operating voltage, and integrated battery systems

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2022-06-08
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Authors
Shujiang Ding
Jingjing Xu
Shirong Lu
Xingyun Cai
Songming Cai
Yaxin Shao
Chao Hu
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