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一步熔盐辅助法直接制备及再生LiNiCoMnO正极

One-Step Molten-Salt-Assisted Approach for Direct Preparation and Regeneration of LiNiCoMnO Cathode.

作者信息

Wang Runting, Li Qin, Wang Fengmei, Ding Jibo, An Baihong, Ruan Jiafeng, Sun Dalin, Fang Fang, Wang Fei

机构信息

Department of Materials Science, Fudan University, Shanghai, 200433, China.

State Key Laboratory of Pollution Control and Resource Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai, 200092, China.

出版信息

Small. 2024 Sep;20(38):e2400762. doi: 10.1002/smll.202400762. Epub 2024 May 25.

Abstract

Single-crystal lithium-nickel-manganese-cobalt-oxide (SC-NMC) is attracting increasing attention due to its excellent structural stability. However, its practical production faces challenges associated with complex precursor preparation processes and severe lithium-nickel cation mixing at high temperatures, which restricts its widespread application. Here, a molten-salt-assisted method is proposed using low-melting-point carbonates. This method obviates the necessity for precursor processes and simplified the synthetic procedure for SC-NMC down to a single isothermal sintering step. Multiple characterizations indicate that the acquired SC-LiNiMnCoO (SC-622) exhibits favorable structural capability against intra-granular fracture and suppressive Li/Ni cation mixing. Consequently, the SC-622 exhibits superior electrochemical performance with a high initial specific capacity (174 mAh g at 0.1 C, 3.0-4.3 V) and excellent capacity retention (87.5% after 300 cycles at 1C). Moreover, this molten-salt-assisted method exhibits its effectiveness in directly regenerating SC-622 from spent NMC materials. The recovered material delivered a capacity of 125.4 mAh g and retained 99.4% of the initial capacity after 250 cycles at 1 C. This work highlights the importance of understanding the process-structure-property relationships and can broadly guide the synthesis of other SC Ni-rich cathode materials.

摘要

单晶锂镍锰钴氧化物(SC-NMC)因其优异的结构稳定性而受到越来越多的关注。然而,其实际生产面临着与复杂的前驱体制备工艺以及高温下严重的锂镍阳离子混合相关的挑战,这限制了其广泛应用。在此,提出了一种使用低熔点碳酸盐的熔盐辅助方法。该方法无需前驱体工艺,并将SC-NMC的合成程序简化为单一的等温烧结步骤。多种表征表明,所获得的SC-LiNiMnCoO(SC-622)具有良好的抗颗粒内断裂结构能力以及抑制Li/Ni阳离子混合的能力。因此,SC-622表现出优异的电化学性能,具有高初始比容量(在0.1 C、3.0 - 4.3 V下为174 mAh g)和出色的容量保持率(在1C下300次循环后为87.5%)。此外,这种熔盐辅助方法在从废旧NMC材料直接再生SC-622方面显示出有效性。回收材料在1 C下250次循环后容量为125.4 mAh g,保留了初始容量的99.4%。这项工作突出了理解工艺-结构-性能关系的重要性,并可广泛指导其他SC富镍正极材料的合成。

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