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Horizons for Li-Ion Batteries Relevant to Electro-Mobility: High-Specific-Energy Cathodes and Chemically Active Separators

机译:与电动汽车相关的锂离子电池的前景:高比能阴极和化学活性隔板

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摘要

Li-ion batteries (LIBs) today face the challenge of application in electrified vehicles (xEVs) which require increased energy density, improved abuse tolerance, prolonged life, and low cost. LIB technology can significantly advance through more realistic approaches such as: i) stable high-specific-energy cathodes based on Li1+xNiyCozMnwO2 (NCM) compounds with either Ni-rich (x = 0, y - 1), or Li- and Mn-rich (0.1 x 0.2, w 0.5) compositions, and ii) chemically active separators and binders that mitigate battery performance degradation. While the stability of such cathode materials during cell operation tends to decrease with increasing specific capacity, active material doping and coatings, together with carefully designed cell-formation protocols, can enable both high specific capacities and good long-term stability. It has also been shown that major LIB capacity fading mechanisms can be reduced by multifunctional separators and binders that trap transition metal ions and/or scavenge acid species. Here, recent progress on improving Ni-rich and Mn-rich NCM cathode materials is reviewed, as well as in the search for inexpensive, multifunctional, chemically active separators. A realistic overview regarding some of the most promising approaches to improving the performance of rechargeable batteries for xEV applications is also presented.
机译:如今,锂离子电池(LIB)面临在电动汽车(xEV)中应用的挑战,这要求增加能量密度,提高耐滥用性,延长使用寿命和降低成本。 LIB技术可以通过更切合实际的方法显着地进步,例如:i)基于Li1 + xNiyCozMnwO2(NCM)化合物且含富镍(x = 0,y-> 1)或Li-的稳定高比能阴极富锰(0.1 0.5)组合物,和ii)减轻电池性能下降的化学活性隔板和粘结剂。尽管这种阴极材料在电池操作期间的稳定性倾向于随比容量的增加而降低,但是活性材料的掺杂和涂层以及精心设计的电池形成方案可以实现高比容量和良好的长期稳定性。还已经表明,可以通过捕获过渡金属离子和/或清除酸物质的多功能隔板和粘合剂来降低主要的LIB容量衰减机理。在此,对改进富镍和富锰NCM阴极材料的最新进展以及寻找廉价,多功能,化学活性的隔膜进行了综述。还提供了有关一些最有希望的方法的现实概述,这些方法可以改善xEV应用中的可充电电池的性能。

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