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用于富镍正极材料的高初始库仑效率和超稳定机械完整性的溶剂/反溶剂涂层

Sol/Antisolvent Coating for High Initial Coulombic Efficiency and Ultra-stable Mechanical Integrity of Ni-Rich Cathode Materials.

作者信息

Zhang Xiaoqing, Xiong Jianwei, Chang Fengzhen, Xu Zhuijun, Wang Zheng, Hall Philip, Cheng Ya-Jun, Xia Yonggao

机构信息

Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences (CAS), Ningbo 315201, PR China.

Department of Chemical and Environmental Engineering, Faculty of Science and Engineering, University of Nottingham, Ningbo 315100, PR China.

出版信息

ACS Appl Mater Interfaces. 2022 Oct 12;14(40):45272-45288. doi: 10.1021/acsami.2c10613. Epub 2022 Sep 27.

Abstract

The Ni-rich cathode holds great promise for high energy density lithium-ion batteries because of its high capacity and operating voltage. However, crucial problems such as cation disorder, structural degradation, side reactions, and microcracks become serious with increasing nickel content. Herein, a novel and facile sol/antisolvent coating modification of Ni-rich layered oxide LiNiCoMnO (NCM) is developed where we use ethanol to disperse the nanosized LiBO to form the sol and adopt tetrahydrofuran (THF) as antisolvent to prepare the cluster of nanoparticles to be coated on the surface of NCM. The coating thickness can be tuned through the THF addition amount. The LiBO nanorod deposition is formed as well over the crack of the NCM cathode, likely acting as a patch to repair the original defect of the intrinsic crack. The uniform LiBO nanospherical particle coating together with LiBO nanorod wrapping provides a double protection against electrolytes. Compared with the raw material, LiBO-coated LiNiCoMnO (LiBO-coated NCM) exhibits a high initial Coulombic efficiency of 90.3% at 0.2 C between 2.8 and 4.3 V vs Li/Li, a superior rate capability, enhanced fast charge property at 3 C, and restricted microcrack formation. This simple in-site modification and repairing technology guarantees a good mechanical integrity of the polycrystalline Ni-rich cathode.

摘要

富镍阴极因其高容量和工作电压,在高能量密度锂离子电池方面具有巨大潜力。然而,随着镍含量的增加,诸如阳离子无序、结构退化、副反应和微裂纹等关键问题变得愈发严重。在此,我们开发了一种新颖且简便的富镍层状氧化物LiNiCoMnO(NCM)的溶胶/反溶剂涂层改性方法,即使用乙醇分散纳米级LiBO以形成溶胶,并采用四氢呋喃(THF)作为反溶剂来制备待涂覆在NCM表面的纳米颗粒簇。涂层厚度可通过THF添加量进行调节。LiBO纳米棒沉积也会在NCM阴极的裂纹上形成,可能起到修补固有裂纹原始缺陷的作用。均匀的LiBO纳米球形颗粒涂层与LiBO纳米棒包裹共同为电解质提供双重保护。与原材料相比 在相对于Li/Li的2.8至4.3V、0.2C的条件下,LiBO包覆的LiNiCoMnO(LiBO包覆的NCM)表现出90.3%的高初始库仑效率、优异的倍率性能、在3C时增强的快速充电性能以及受限的微裂纹形成。这种简单的原位改性和修复技术保证了多晶富镍阴极良好的机械完整性。

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