首页> 外文期刊>Advanced energy materials >Li[Ni_(0.9)Co_(0.09)W_(0.01)]O_2: A New Type of Layered Oxide Cathode with High Cycling Stability
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Li[Ni_(0.9)Co_(0.09)W_(0.01)]O_2: A New Type of Layered Oxide Cathode with High Cycling Stability

机译:Li [Ni_(0.9)Co_(0.09)W_(0.01)] O_2:一种新型的高循环稳定性层状阴极

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摘要

Substituting W for Al in the Ni-rich cathode Li[Ni0.885Co0.10Al0.015]O-2 (NCA89) produces Li[Ni0.9Co0.09W0.01]O-2 (NCW90) with markedly reduced primary particle size. Particle size refinement considerably improves the cathode's cycling stability such that the NCW90 cathode retains 92% of its initial capacity after 1000 cycles (compared to 63% for NCA89), while the cathode produces a high initial discharge capacity of 231.2 mAh g(-1) (at 0.1 C). Thus, the proposed NCW90 can deliver high energy density and a long battery lifetime simultaneously, unlike other Ni-rich layered oxide cathodes. This unprecedented cycling stability is mainly attributed to a series of interparticular microfractures that absorb the anisotropic lattice strain caused by a deleterious phase transition near the charge end, thereby improving the cathode's resistance to fracture. Microcrack suppression preserves the mechanical integrity of the cathode particles during cycling and protects the particle interior from detrimental electrolyte attack. The proposed NCW90 cathode provides an improved material from which a new series of Ni-rich layered cathode can be developed for next-generation electric vehicles.
机译:在富镍阴极Li [Ni0.885Co0.10Al0.015] O-2(NCA89)中用W代替Al可制得Li [Ni0.9Co0.09W0.01] O-2(NCW90),一次粒径明显减小。细化粒径可显着改善阴极的循环稳定性,从而使NCW90阴极在1000次循环后仍保持其初始容量的92%(对于NCA89,则为63%),而阴极产生的高初始放电容量为231.2 mAh g(-1) (在0.1 C下)。因此,与其他富Ni的分层氧化物阴极不同,提出的NCW90可以同时提供高能量密度和长电池寿命。这种空前的循环稳定性主要归因于一系列微粒间的微裂纹,它们吸收了由于靠近电荷端的有害相变而引起的各向异性晶格应变,从而提高了阴极的抗断裂性。微裂纹抑制可在循环过程中保留阴极颗粒的机械完整性,并保护颗粒内部免受有害的电解质侵蚀。提出的NCW90阴极提供了一种改进的材料,可以从中开发出一系列新的富镍层状阴极用于下一代电动汽车。

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