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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Enhancing High-Temperature and High-Voltage Performances of Single-Crystal LiNi0.5Co0.2Mn0.3O2 Cathodes through a LiBO2/LiAlO2 Dual-Modification Strategy
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Enhancing High-Temperature and High-Voltage Performances of Single-Crystal LiNi0.5Co0.2Mn0.3O2 Cathodes through a LiBO2/LiAlO2 Dual-Modification Strategy

机译:通过Libo2 / Lialo2双改性策略增强单晶LINI0.5Co0.2Mn0.3O2阴极的高温和高压性能

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摘要

The limited lithium-ion diffusion and depressed cathode/electrolyte interface stability greatly deteriorate the cycling and rate performance of lithium-ion batteries, especially when they are operated at elevated temperatures (>= 50 degrees C) and/or high charge cutoff voltages (>4.4 V vs Li/Li+). Herein, we proposed a demand-oriented surface coating strategy by introducing multifunctional LiBO2/LiAlO2 layers onto the surface of LiNi0.5Co0.2Mn0.3O2 (NCM) single crystals, in which the middle LiAlO2 layer is designed to ensure intimate contact with NCM to prevent the direct contact between the cathode and electrolyte and thus strengthen the cathode surface structure. The outmost LiBO2 is expected to serve as an isolation layer to improve the Li+ transportation and solid electrolyte interface stability. LiBO2/LiAlO2 (BA-NCM)(-) and LiBO2 (B-NCM)-coated NCM were demonstrated and systematically studied by several experimental techniques. Benefiting from the demand-oriented coating strategy, BA-NCM shows the much-improved rate and cycling performances as compared with B-NCM and bare NCM at both 25 and 55 degrees C. Especially, when operated at 55 degrees C, the capacity retention of BA-NCM after 500 cycles at 1 degrees C is as high as 66.3%, while it is 26.9% for B-NCM.
机译:有限的锂离子扩散和凹陷的阴极/电解质界面稳定性极大地劣化了锂离子电池的循环和速率性能,特别是当它们在高温(> = 50℃)和/或高电荷截止电压下操作时(> 4.4 v vs li / li +)。在此,我们通过将多功能Libo2 / LiAlo2层引入LiNi0.5Co0.2Mn0.3O2(NCM)单晶的表面上提出了一种需求的表面涂层策略,其中中间Lialo2层旨在确保与NCM相密接触防止阴极和电解质之间的直接接触,从而加强阴极表面结构。最大的libo2预期用作分离层以改善Li +运输和固体电解质界面稳定性。利用Libo2 / LiAlO2(Ba-NCM)( - )和LibO2(B-NCM) - 通过几种实验技术进行了证明和系统地研究了NCM。从需求导向的涂层策略受益,Ba-NCM与B-NCM和25℃的B-NCM和裸NCM相比,较大提高的速率和循环性能。特别是在55摄氏度下操作时,容量保持在1℃下500次循环后的BA-NCM高达66.3%,而B-NCM为26.9%。

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