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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Structural Underpinnings of the Enhanced Cycling Stability upon Al-Substitution in LiNi_(0.45)Mn_(0.45)Co_(0.1-y)Al_yO2 Positive Electrode Materials for Li-ion Batteries
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Structural Underpinnings of the Enhanced Cycling Stability upon Al-Substitution in LiNi_(0.45)Mn_(0.45)Co_(0.1-y)Al_yO2 Positive Electrode Materials for Li-ion Batteries

机译:锂离子电池LiNi_(0.45)Mn_(0.45)Co_(0.1-y)Al_yO2正极材料中Al取代后增强循环稳定性的结构基础

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摘要

Single-phase LiNi_(0.45)Mn_(0.45)Co_(0.1-y)Al_yO2 layered oxide materials with 0 ≤ y ≤ 0.10 were prepared using the glycine-nitrate combustion method. Al-substitution has a minimal effect on the defect concentration and rate capability of the materials, but raises the operating voltage and reduces the capacity fade of the materials during prolonged cycling compared to the unsubstituted system. In situ X-ray diffraction suggests the presence of Al has a significant structural impact during battery operation. It acts to limit the changes in lattice parameters observed during electrochemical charging and cycling of the materials. High-resolution X-ray diffraction reveals structural distortions in the transition metal layers of as-synthesized powders with high Al-contents, as well as a structural evolution seen in all materials after cycling.
机译:使用甘氨酸硝酸盐燃烧法制备了单相LiNi_(0.45)Mn_(0.45)Co_(0.1-y)Al_yO2层状氧化物材料,其中0≤y≤0.10。与未取代的系统相比,Al替代对材料的缺陷浓度和速率性能的影响最小,但在延长的循环过程中会提高工作电压并减少材料的容量衰减。 X射线原位衍射表明,铝的存在在电池运行期间具有重大的结构影响。它的作用是限制在材料的电化学充电和循环过程中观察到的晶格参数的变化。高分辨率X射线衍射揭示了高含量Al合成粉末的过渡金属层中的结构变形,以及所有材料在循环后均发生了结构演变。

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