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通过苯重氮盐在锂镍钴锰氧化物阴极上接枝聚合物涂层以促进循环性能和高压稳定性

Grafting a Polymer Coating Layer onto Li Ni Co Mn O Cathode by Benzene Diazonium Salts to Facilitate the Cycling Performance and High-Voltage Stability.

作者信息

Liu Junhao, Li Fangkun, Xi Lei, Sun Zhaoyu, Yang Yan, Shen Jiadong, Yao Shiyan, Zhao Jingwei, Zhu Min, Liu Jun

机构信息

Guangdong Provincial Key Laboratory of Advanced Energy Storage Materials, School of Materials Science and Engineering, South China University of Technology, Guangzhou, 510641, China.

Research and Development Center, Guangzhou Tinci Materials Technology Co., Ltd., Guangzhou, 510765, China.

出版信息

Small. 2024 Jan;20(2):e2305606. doi: 10.1002/smll.202305606. Epub 2023 Sep 5.

Abstract

Li-rich Mn-based cathodes have been regarded as promising cathodes for lithium-ion batteries because of their low cost of raw materials (compared with Ni-rich layer structure and LiCoO cathodes) and high energy density. However, for practical application, it needs to solve the great drawbacks of Li-rich Mn-based cathodes like capacity degradation and operating voltage decline. Herein, an effective method of surface modification by benzene diazonium salts to build a stable interface between the cathode materials and the electrolyte is proposed. The cathodes after modification exhibit excellent cycling performance (the retention of specific capacity is 84.2% after 350 cycles at the current density of 1 C), which is mainly attributed to the better stability of the structure and interface. This work provides a novel way to design the coating layer with benzene diazonium salts for enhancing the structural stability under high voltage condition during cycling.

摘要

富锂锰基正极材料因其原材料成本低(与富镍层状结构和钴酸锂正极相比)和高能量密度,被视为锂离子电池很有前景的正极材料。然而,对于实际应用而言,需要解决富锂锰基正极材料存在的诸如容量衰减和工作电压下降等重大缺点。在此,提出了一种通过苯重氮盐进行表面改性的有效方法,以在正极材料和电解质之间构建稳定的界面。改性后的正极表现出优异的循环性能(在1 C电流密度下350次循环后比容量保持率为84.2%),这主要归因于结构和界面具有更好的稳定性。这项工作提供了一种用苯重氮盐设计涂层的新方法,以增强循环过程中高压条件下的结构稳定性。

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