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Mitigated phase transition during first cycle of a Li-rich layered cathode studied by in operando synchrotron X-ray powder diffraction

机译:通过在Outmando Synchrotron X射线粉末衍射中研究了锂富富分层阴极的第一次循环期间的缓解相转变

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摘要

In operando synchrotron X-ray powder diffraction (SXPD) studies were conducted to investigate the phase transition of Li-rich Li(Li0.2Ni0.13Mn0.54Co0.13)O2 and Cr-doped Li(Li0.2Ni0.13Mn0.54Co0.03Cr0.10)O2 cathodes during the first charge/discharge cycle. Crystallographic (lattice parameters) and mechanical (domain size and microstrain) information was collected from SXPD full pattern refinement. It was found that Cr substitution at Co-site benefits in suppressing the activation of Li2MnO3 domains upon 1st charge, and thus mitigates the phase transition. As a consequence, Cr-doped layered cathode holds a better reversibility in terms of a full recovery of both lattice parameters and nano-domain size after a whole charge/discharge cycle. The effects of different cycling rates on the structural change were also discussed.
机译:在Operando同步X射线粉末衍射(SXPD)研究中进行了研究以研究富含Li(Li0.2Ni0.13mN0.54CO0.13)O 2和Cr-掺杂Li(Li0.2Ni0.13mN0.54Co0的相转变。 03Cr0.10)O2阴极在第一充电/放电循环期间。从SXPD全图案改进中收集了晶体(晶格参数)和机械(域大小和微带器)信息。发现CR在共同位点益处抑制在第一次电荷时抑制Li2MNO3结构域的活化,从而减轻相转变。结果,在整个充电/放电循环之后的晶格参数和纳米域尺寸的完全恢复方面,CR掺杂层状阴极可更好地可逆性。还讨论了不同循环率对结构变化的影响。

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