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首页> 外文期刊>Advanced energy materials >Cobalt-Free High-Capacity Ni-Rich Layered Li[Ni_(0.9)Mn_(0.1)]O_2 Cathode
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Cobalt-Free High-Capacity Ni-Rich Layered Li[Ni_(0.9)Mn_(0.1)]O_2 Cathode

机译:无钴高容量富镍层状Li [Ni_(0.9)Mn_(0.1)] O_2阴极

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Li[Ni0.9Co0.1]O-2 (NC90), Li[Ni0.9Co0.05Mn0.05]O-2 (NCM90), and Li[Ni0.9Mn0.1]O-2 (NM90) cathodes are synthesized for the development of a Co-free high-energy-density cathode. NM90 maintains better cycling stability than the two Co-containing cathodes, particularly under harsh cycling conditions (a discharge capacity of 236 mAh g(-1) with a capacity retention of 88% when cycled at 4.4 V under 30 degrees C and 93% retention when cycled at 4.3 V under 60 degrees C after 100 cycles). The reason for the enhanced stability is mainly the ability of NM90 to absorb the strain associated with the abrupt anisotropic lattice contraction/extraction and to suppress the formation of microcracks, in addition to enhanced chemical stability from the increased presence of stable Mn4+. Although the absence of Co deteriorates the rate capability, this can be overcome as the rate capability of the NM90 approaches that of the NCM90 when cycled at 60 degrees C. The long-term cycling stability of NM90 is confirmed in a full cell, demonstrating that it is one of the most promising Co-free cathodes for high-energy-density applications. This study not only provides insight into redefining the role of Mn in a Ni-rich cathode, it also represents a clear breakthrough in achieving a commercially viable Co-free Ni-rich layered cathode.
机译:合成了Li [Ni0.9Co0.1] O-2(NC90),Li [Ni0.9Co0.05Mn0.05] O-2(NCM90)和Li [Ni0.9Mn0.1] O-2(NM90)阴极用于开发无钴高能密度阴极。 NM90保持比两个含Co阴极更好的循环稳定性,特别是在恶劣的循环条件下(放电容量为236 mAh g(-1),在30°C下以4.4 V循环时,容量保持率为88%,保持率为93% 100次循环后,在60摄氏度和4.3 V下循环)。稳定性提高的原因主要是NM90能够吸收与突然发生的各向异性晶格收缩/萃取相关的应变并抑制微裂纹的形成,此外还可以通过增加稳定的Mn4 +的存在来增强化学稳定性。尽管不存在Co会降低速率能力,但可以克服,因为在60摄氏度下循环时NM90的速率能力接近NCM90的速率能力。在整个电池中证实了NM90的长期循环稳定性,这表明它是用于高能量密度应用的最有希望的无钴阴极之一。这项研究不仅为重新定义Mn在富Ni阴极中的作用提供了见识,而且在实现商业上可行的无Co富Ni层状阴极方面也取得了明显突破。

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