Rational design of mechanically robust Ni-rich cathode materials via concentration gradient strategy

Author:

Liu Tongchao,Yu Lei,Lu JunORCID,Zhou Tao,Huang Xiaojing,Cai Zhonghou,Dai Alvin,Gim JihyeonORCID,Ren YangORCID,Xiao XianghuiORCID,Holt Martin V.ORCID,Chu Yong S.,Arslan Ilke,Wen JianguoORCID,Amine KhalilORCID

Abstract

AbstractMechanical integrity issues such as particle cracking are considered one of the leading causes of structural deterioration and limited long-term cycle stability for Ni-rich cathode materials of Li-ion batteries. Indeed, the detrimental effects generated from the crack formation are not yet entirely addressed. Here, applying physicochemical and electrochemical ex situ and in situ characterizations, the effect of Co and Mn on the mechanical properties of the Ni-rich material are thoroughly investigated. As a result, we successfully mitigate the particle cracking issue in Ni-rich cathodes via rational concentration gradient design without sacrificing the electrode capacity. Our result reveals that the Co-enriched surface design in Ni-rich particles benefits from its low stiffness, which can effectively suppress the formation of particle cracking. Meanwhile, the Mn-enriched core limits internal expansion and improve structural integrity. The concentration gradient design also promotes morphological stability and cycling performances in Li metal coin cell configuration.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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