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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Analysis of Charged State Stability for Monoclinic LiMnBO3 Cathode
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Analysis of Charged State Stability for Monoclinic LiMnBO3 Cathode

机译:单斜晶LiMnBO3阴极的荷电态稳定性分析

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The stability of the charged state of monoclinic LiMnBO3 has been analyzed to better understand its electrochemical cycling behavior in this work. First-principles calculations indicate that delithiated monoclinic Li_(1-x)MnBO3 becomes unstable for x ≥ 0.625. Results obtained from ex-situ X-ray diffraction on charged electrodes and chemically oxidized powder confirm the phase decomposition of the LiMnBO3 phase when a significant amount of Li is extracted. Energy-dispersive X-ray spectroscopy and X-ray diffraction analysis also reveal Mn dissolution from the cycled LiMnBO3 cathodes and chemically delithiated LiMnBO3 specimen. Based on these results, we consider the cycling performance of monoclinic LiMnBO3 to be primarily limited by its charged state instability. To overcome this limitation, we partially substituted Mn with Mg to maintain structural integrity of the phase and reduce capacity fading over multiple cycles.
机译:分析了单斜晶LiMnBO3充电状态的稳定性,以更好地了解其在这项工作中的电化学循环行为。第一性原理计算表明,当x≥0.625时,脱锂的单斜晶Li_(1-x)MnBO3变得不稳定。从带电电极上的异位X射线衍射和化学氧化的粉末获得的结果证实,当提取大量的Li时,LiMnBO3相的相分解。能量色散X射线光谱法和X射线衍射分析还显示,Mn从循环的LiMnBO3阴极和化学脱锂的LiMnBO3样品中溶解。基于这些结果,我们认为单斜晶LiMnBO3的循环性能主要受其充电状态不稳定性的限制。为了克服此限制,我们用Mg部分取代了Mn,以保持相的结构完整性并减少多个循环的容量衰减。

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