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富镍Li[Ni Mn Co]O单晶作为锂离子电池优异的快速充电阴极材料

Ni-Rich Li[Ni Mn Co ]O Single Crystals as Superior Fast Charge Cathodes for Lithium-Ion Batteries.

作者信息

Murugan Vivekanantha, Ryu Hoon-Hee, Chen Guoying

机构信息

Energy Storage and Distributed Resources Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

ACS Energy Lett. 2025 Apr 17;10(5):2350-2358. doi: 10.1021/acsenergylett.5c00736. eCollection 2025 May 9.

Abstract

The utilization of single-crystal (SC) Li[Ni Mn Co ]O (NMC) cathodes has facilitated unparalleled performance in commercial high-energy lithium-ion batteries (LIBs). In the current study, we evaluate the application of SC cathodes in fast charge (FC)-LIBs where particle cracking is a predominant failure mechanism. Ni-rich SC-NMC samples with various compositions, sizes, and shapes are synthesized and investigated for their influence on FC performance. We reveal the necessity of utilizing smaller SCs (<1 μm) as larger sizes (>2 μm) experience significant particle-level lithium concentration gradients under FC conditions. To improve lithium transport and minimize side reactivities, we strategically expose the (104) crystal facets on the surface. Exceptional performance was observed on an optimized SC-LiNiMnCoO, delivering a discharge capacity of 165 mAh/g even after 150 cycles at 6C charge. Our study not only demonstrates the promise of SC-NMC but also provides the key insights for the design and optimization of advanced cathodes for FC-LIBs.

摘要

单晶(SC)Li[Ni Mn Co ]O(NMC)阴极的应用在商用高能锂离子电池(LIBs)中实现了无与伦比的性能。在当前的研究中,我们评估了SC阴极在快速充电(FC)-LIBs中的应用,其中颗粒开裂是主要的失效机制。合成了具有不同组成、尺寸和形状的富镍SC-NMC样品,并研究了它们对FC性能的影响。我们发现使用较小的SC(<1μm)的必要性,因为较大尺寸(>2μm)在FC条件下会经历显著的颗粒级锂浓度梯度。为了改善锂传输并最小化副反应,我们策略性地在表面暴露(104)晶面。在优化的SC-LiNiMnCoO上观察到了优异的性能,即使在6C充电150次循环后,放电容量仍为165 mAh/g。我们的研究不仅证明了SC-NMC的前景,还为FC-LIBs先进阴极的设计和优化提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01ee/12070458/46982e77a617/nz5c00736_0001.jpg

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