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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Thermodynamics of Antisite Defects in Layered NMC Cathodes: Systematic Insights from High-Precision Powder Diffraction Analyses
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Thermodynamics of Antisite Defects in Layered NMC Cathodes: Systematic Insights from High-Precision Powder Diffraction Analyses

机译:分层NMC阴极中防电缺陷的热力学:高精度粉末衍射分析的系统见解

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摘要

While it is accepted that paired Ni-Li and Li-Ni antisite defects are present in the important family of NMC cathode materials with the general formula Li(NixMnyCoz)O-2, their formation mechanism and influence on properties are not well understood due to the difficulty of accurately quantifying defects. In this work, novel high-precision powder diffraction methods have been used to elucidate the dependence of defect concentration on NMC composition. Formation energies for paired antisite defects (calculated under the assumption of equal state degeneracy) are observed to vary from about 320 to 160 meV, contradicting the constant defect formation energy that would be expected based on the previously proposed atomistic defect formation mechanism (size similarity of N2+ and Li+ cations). The present data support an alternative mechanism in which the equilibrium defect concentration is determined by the average size of transition-metal sites and thus suggest a new route by which chemical substitutions can be used to tune defect concentrations to optimal levels.
机译:虽然接受成对的Ni-Li和Li-Ni Arisite缺陷存在于具有通式Li(Nixmnycoz)O-2的NMC阴极材料的重要系列中存在,但它们的形成机制和对性质的影响并不适当地理解准确定量缺陷的难度。在这项工作中,已经采用了新型高精度粉末衍射方法来阐明缺陷浓度对NMC组合物的依赖性。用于配对的反筋缺陷的形成能量(根据相等状态退化的假设计算),以从约320到160meV的变化,与先前提出的原子缺陷形成机制(尺寸相似度)相反,矛盾的缺陷形成能量矛盾N2 +和Li +阳离子)。本数据支持一种替代机制,其中平衡缺陷浓度由过渡金属位点的平均尺寸确定,因此提示了一种新的途径,可以使用化学取代来将缺陷浓度调节到最佳水平。

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