College of Materials Science and Engineering and ‡Department of Advanced Energy Materials, Sichuan University , Chengdu, 610064, P. R. China.
ACS Appl Mater Interfaces. 2016 Feb 3;8(4):2723-31. doi: 10.1021/acsami.5b10977. Epub 2016 Jan 21.
A thick and dense flakelike LiCoO2 with exposed {010} active facets is synthesized using Co(OH)2 nanoflake as a self-sacrificial template obtained from a simple coprecipitation method, and served as a cathode material for lithium ion batteries. When operated at a high cutoff voltage up to 4.5 V, the resultant LiCoO2 exhibits an outstanding rate capability, delivering a reversible discharge capacity as high as 179, 176, 168, 116, and 96 mA h g(-1) at 25 °C under the current rate of 0.1, 0.5, 1, 5, and 10 C, respectively. When charge/discharge cycling at 55 °C, a high specific capacity of 148 mA h g(-1) (∼88% retention) can be retained after 100 cycles under 1 C, demonstrating excellent cycling and thermal stability. Besides, the flakelike LiCoO2 also shows an impressive low-temperature electrochemical activity with specific capacities of 175 (0.1 C) and 154 mA h g(-1) (1 C) at -10 °C, being the highest ever reported for a subzero-temperature lithium storage capability, as well as 52% capacity retention even after 80 cycles under 1 C. Such superior high-voltage electrochemical performances of the flakelike LiCoO2 operated at a wide temperature range are mainly attributed to its unique hierarchical structure with specifically exposed facets. The exposed {010} active facets provide a preferential crystallographic orientation for Li-ion migration, while the micrometer-sized secondary particles agglomerated by submicron primary LiCoO2 flakes endow the electrode with better structural integrity, both of which ensure the LiCoO2 cathode to manifest remarkably enhanced reversible lithium storage properties.
一种具有暴露的{010}活性面的厚而密集的片状 LiCoO2,是通过一种简单的共沉淀方法,使用 Co(OH)2 纳米片作为自牺牲模板合成的,用作锂离子电池的阴极材料。当在高达 4.5 V 的高截止电压下运行时,所得 LiCoO2 表现出出色的倍率性能,在 25°C 下,电流速率为 0.1、0.5、1、5 和 10 C 时,可逆放电容量分别高达 179、176、168、116 和 96 mA h g-1。当在 55°C 下进行充放电循环时,在 1 C 下 100 次循环后可以保留 148 mA h g-1(约 88%的保持率)的高比容量,表现出优异的循环和热稳定性。此外,片状 LiCoO2 还表现出令人印象深刻的低温电化学活性,在-10°C 时的比容量为 175(0.1 C)和 154 mA h g-1(1 C),这是迄今为止报道的最低温下锂存储能力的最高值,即使在 1 C 下 80 次循环后,容量保持率仍为 52%。片状 LiCoO2 在宽温度范围内的这种优越的高压电化学性能主要归因于其具有特定暴露面的独特分层结构。暴露的{010}活性面为锂离子迁移提供了优先的晶向,而微米级的二次颗粒由亚微米级的 LiCoO2 薄片聚集而成,赋予电极更好的结构完整性,这两者都确保了 LiCoO2 阴极表现出显著增强的可逆锂存储性能。