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关于富锂层状氧化物正极材料报道中的差异。

On the disparity in reporting Li-rich layered oxide cathode materials.

作者信息

Lin Tongen, Seaby Trent, Huang Xia, Wang Lianzhou

机构信息

Nanomaterials Centre, School of Chemical Engineering, and Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, QLD 4072, Australia.

出版信息

Chem Commun (Camb). 2023 Mar 7;59(20):2888-2902. doi: 10.1039/d2cc04614h.

Abstract

Lithium-rich layered oxides are considered one of the most promising cathode materials for next generation lithium-ion batteries due to their extraordinary specific capacity of over 280 mA h g and superior energy density of over 1000 W h kg. Despite the excellent performance, LRLOs still suffer from low Coulombic efficiency, serious capacity/voltage decay upon cycling, voltage hysteresis, short lifespan, and poor rate capability. Driven by the thirst for high-energy-density battery technologies, various strategies have been developed to address these issues with great progress being achieved in the past several years. However, the emerging disparity among the published results severely precludes meaningful comparisons between different LRLOs and material modification strategies, which has become an impediment to the development and commercialization of LRLOs. Although the significance of standardization has been recognized in the battery community, the standardization of LRLOs is worth particular attention due to their complicated compositions and unique electrochemical properties. This perspective analyzes the underlying parameters that can cause varied and even controversial results observed in LRLOs, from the synthesis procedure to the electrochemical evaluation procedure, followed by preliminary suggestions for the standard protocols of chemical compositions, synthesis pathways, calcination conditions, electrode preparation, battery fabrication, and battery testing. Hopefully, this perspective can help build a reliable baseline for LRLO research, thus aligning the huge research effort toward the practical applications of LRLOs.

摘要

富锂层状氧化物因其超过280 mA h g的非凡比容量和超过1000 W h kg的卓越能量密度,被认为是下一代锂离子电池最有前景的正极材料之一。尽管性能优异,但富锂层状氧化物仍存在库仑效率低、循环时容量/电压严重衰减、电压滞后、寿命短和倍率性能差等问题。受对高能量密度电池技术的渴望驱动,人们开发了各种策略来解决这些问题,在过去几年中取得了很大进展。然而,已发表结果之间出现的差异严重妨碍了不同富锂层状氧化物和材料改性策略之间进行有意义的比较,这已成为富锂层状氧化物开发和商业化的障碍。尽管标准化的重要性在电池领域已得到认可,但由于富锂层状氧化物的成分复杂且具有独特的电化学性质,其标准化值得特别关注。本文从合成过程到电化学评估过程,分析了可能导致富锂层状氧化物出现不同甚至有争议结果的潜在参数,随后对化学成分、合成途径、煅烧条件、电极制备、电池制造和电池测试的标准协议提出了初步建议。希望本文能为富锂层状氧化物研究建立一个可靠的基线,从而使巨大的研究努力朝着富锂层状氧化物的实际应用方向发展。

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