State Key Laboratory of Powder Metallurgy , Central South University , Changsha , Hunan 410083 , People's Republic of China.
Department of Chemical & Materials Engineering , University of Alberta , Edmonton , Alberta T6G 1H9 , Canada.
ACS Appl Mater Interfaces. 2018 Aug 29;10(34):28719-28725. doi: 10.1021/acsami.8b10519. Epub 2018 Aug 16.
A class of Ni-based layered Na NiMnCoO oxide composites is prepared via a solid-state process. Mixed P-, O-, and P-/O-type phases can be obtained by tuning the Na content and annealing temperature, as demonstrated by structural and chemical characterization. Among these materials, the triphase P2/P'3/O'3-type composite exhibits the best overall electrochemical performance. Specifically, this triphase composite delivers a high specific capacity of 126 mA h g in the potential range of 1.5-4.2 V, high rate capability (∼72% of its initial capacity at a rate of 5 C), and good capacity retention after 100 cycles at 0.5 C. The structural transition mechanism for each phase upon electrochemical cycling is investigated, providing insights into the correlation between electrochemical properties and the crystal structure of Ni-rich layered Na NiMnCoO oxide composites.
通过固态法制备了一类 Ni 基层状 NaNiMnCoO 氧化物复合材料。通过调节 Na 含量和退火温度,可以得到混合的 P-、O-和 P-/O-型相,这可以通过结构和化学特性来证明。在这些材料中,三相 P2/P'3/O'3 型复合材料表现出最佳的整体电化学性能。具体来说,这种三相复合材料在 1.5-4.2 V 的电位范围内提供了高的比容量 126 mA h g-1,高倍率性能(在 5 C 的倍率下,其初始容量的约 72%),以及在 0.5 C 下 100 次循环后的良好容量保持率。研究了每个相在电化学循环过程中的结构转变机制,为富镍层状 NaNiMnCoO 氧化物复合材料的电化学性能与晶体结构之间的相关性提供了深入的了解。