Promises and Challenges of Next-Generation “Beyond Li-ion” Batteries for Electric Vehicles and Grid Decarbonization

Перспективы и проблемы аккумуляторных батарей нового поколения, выходящих за пределы литий-ионных технологий, для электромобилей и декарбонизации энергосетей
Yaosen Tian, Guobo Zeng, Ann Rutt, Tan Shi, Haegyeom Kim, Jingyang Wang, Julius Koettgen, Yingzhi Sun, Bin Ouyang, Tina Chen, Zhengyan Lun, Ziqin Rong, Kristin A. Persson, Gerbrand Ceder
2020-12-24

K-ion batteriesNa-ion batteriesall-solid-state batteriesbeyond Li-ion batteriesmultivalent batteries
The tremendous improvement in performance and cost of lithium-ion batteries (LIBs) have made them the technology of choice for electrical energy storage. While established battery chemistries and cell architectures for Li-ion batteries achieve good power and energy density, LIBs are unlikely to meet all the performance, cost, and scaling targets required for energy storage, in particular, in large-scale applications such as electrified transportation and grids. The demand to further reduce cost and/or increase energy density, as well as the growing concern related to natural resource needs for Li-ion have accelerated the investigation of so-called "beyond Li-ion" technologies. In this review, we will discuss the recent achievements, challenges, and opportunities of four important "beyond Li-ion" technologies: Na-ion batteries, K-ion batteries, all-solid-state batteries, and multivalent batteries. The fundamental science behind the challenges, and potential solutions toward the goals of a low-cost and/or high-energy-density future, are discussed in detail for each technology. While it is unlikely that any given new technology will fully replace Li-ion in the near future, "beyond Li-ion" technologies should be thought of as opportunities for energy storage to grow into mid/large-scale applications.
1
Demand for lower costs, higher energy density, and reduced dependence on constrained natural resources is driving research into beyond-lithium-ion technologies.
2
Established lithium-ion batteries provide strong power and energy density but may not satisfy all future cost, performance, and scalability requirements, especially for electric vehicles and grids.
3
Fundamental scientific challenges and potential solutions are identified for developing beyond-lithium-ion systems with low cost and/or high energy density.
4
No single emerging technology is likely to fully replace lithium-ion batteries soon; instead, beyond-lithium-ion systems may enable expansion into medium- and large-scale energy-storage applications.
5
The review evaluates recent progress, challenges, and opportunities in sodium-ion, potassium-ion, all-solid-state, and multivalent batteries.

Beyond Li-ion battery technologies, specifically Na-ion, K-ion, all-solid-state, and multivalent batteries, for electric-vehicle and grid energy storage

The recent achievements, challenges, opportunities, and fundamental mechanisms governing the cost, energy density, scalability, and resource sustainability of beyond Li-ion batteries

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2020-12-24
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Yaosen Tian
Guobo Zeng
Ann Rutt
Tan Shi
Haegyeom Kim
Jingyang Wang
Julius Koettgen
Yingzhi Sun
Bin Ouyang
Tina Chen
Zhengyan Lun
Ziqin Rong
Kristin A. Persson
Gerbrand Ceder
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