材料科学
涂层
结晶度
图层(电子)
法拉第效率
锂(药物)
阴极
化学工程
电极
纳米技术
复合材料
阳极
内分泌学
物理化学
化学
工程类
医学
作者
Zhenjiang He,Jingyi Li,Ziyan Luo,Zhiwei Zhou,Xiangkang Jiang,Junchao Zheng,Yunjiao Li,Jing Mao,Kehua Dai,Cheng Yan,Zhaoming Sun
标识
DOI:10.1021/acsami.1c11180
摘要
Li-rich Mn-based-layered oxides are considered to be the most felicitous cathode material candidates for commercial application of lithium-ion batteries on account of high energy density. Nevertheless, defects containing an unsatisfactory initial Coulombic efficiency and rapid voltage decay seriously impede their practical utilization. Herein, a coating layer with three distinct crystalline states are employed as a coating layer to modify Li[Li0.2Mn0.54Ni0.13Co0.13]O2, respectively, and the effects of coating layers with distinct crystalline states on the crystal structure, diffusion kinetics, and cell performance of host materials are further explored. A coating layer with high crystallinity enables mitigatory voltage decay and better cyclic stability of materials, while a coating layer with planar defects facilitates Li+ transfer and enhances the rate performance of materials. Consequently, optimizing the crystalline state of coating substances is critical for preferable surface modification.
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