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
2020-12-24
SCID: 54.1/mfcb4293
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K-ion batteriesNa-ion batteriesall-solid-state batteriesbeyond Li-ion batteriesmultivalent batteries
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Abstract (AI)
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.
Key Findings
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.
Research Object
Beyond Li-ion battery technologies, specifically Na-ion, K-ion, all-solid-state, and multivalent batteries, for electric-vehicle and grid energy storage
Research Subject
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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