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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >First-Principles Calculations of Lithiation of a Hydroxylated Surface of Amorphous Silicon Dioxide
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First-Principles Calculations of Lithiation of a Hydroxylated Surface of Amorphous Silicon Dioxide

机译:非晶态二氧化硅的羟基化表面的锂化的第一性原理计算

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Amorphous silicon dioxide films arise naturally by exposure of silicon surfaces to atmospheric environments. When used as electrodes in Li-ion batteries, the characterization of surface lithiation is relevant to the understanding of the performance of Si anodes. In this work, density functional theory analyses of the lithiation of an amorphous silicon dioxide film reveal the lithiation mechanisms and the role of the surface functional groups on the lithiation reactions and on the structure of the lithiated film. The surface concentration of silanol groups and structure of the optimized model of amorphous hydroxylated silicon dioxide film agree with those observed experimentally. It is found that Li is incorporated via breaking of Si-O bonds and partial reduction of the Si atoms. Evaluation of the formation energy for lithiation of the film indicates that the film would saturate at a Li/Si ratio of 3.48. Analyses of radial distribution functions and coordination numbers show the evolution of the structure upon lithiation, indicating the presence of Li6O complexes stabilized by the surrounding Si atoms
机译:非晶态二氧化硅薄膜是通过将硅表面暴露于大气环境而自然产生的。当用作锂离子电池的电极时,表面锂化的表征与对Si阳极性能的理解有关。在这项工作中,对非晶态二氧化硅薄膜锂化的密度泛函理论分析揭示了锂化机理以及表面官能团在锂化反应和锂化薄膜结构上的作用。硅烷醇基团的表面浓度和非晶态羟基化二氧化硅薄膜的优化模型结构与实验观察到的一致。发现Li是通过Si-O键的断裂和Si原子的部分还原而结合的。评估膜锂化的形成能表明,膜将以3.48的Li / Si比饱和。径向分布函数和配位数的分析显示了锂化后结构的演变,表明存在被周围Si原子稳定的Li6O络合物

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