首页> 外文会议>Energy Conversion Engineering Conference, 1997. IECEC-97., Proceedings of the 32nd Intersociety >A theoretical study of a carbon lattice system for lithium intercalated carbon anodes
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A theoretical study of a carbon lattice system for lithium intercalated carbon anodes

机译:锂嵌入碳阳极碳晶格体系的理论研究

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A theoretical study was performed using computational chemistry to describe the intermolecular forces between graphite layers as well as spacing and conformation. It was found that electron correlation and a diffuse basis set were important for this calculation. In addition, the high reactivity of edge sites in lithium intercalated carbon anodes was also investigated. In this case, the reactive sites appear to strongly correlate with the relative distribution of the total atomic spin densities as well as total atomic charges. The spacing of graphite layers and lithium ion separation within an "approximated" lithium intercalated carbon anode was also investigated. The spacing of the carbon layers used in this investigation agrees most closely for that found in disordered carbon lattices.
机译:使用计算化学进行理论研究,以描述石墨层之间的分子间力以及间隔和构象。发现电子相关和漫反射基集对于该计算很重要。此外,还研究了锂插入碳阳极锂中边缘位点的高反应性。在这种情况下,反应位点与总原子旋转密度的相对分布以及总原子电荷的相对分布似乎非常相关。还研究了“近似”锂插层碳阳极内石墨层和锂离子分离的间距。本研究中使用的碳层的间距同意,对碳晶片中的碳格晶片中发现最密切。

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