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LiBC - Synthesis, electrochemical and solid-state NMR investigations

机译:LiBC-合成,电化学和固态NMR研究

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摘要

LiBC was synthesized from the elements in a sealed niobium ampoule. It represents a totally intercalated heterographite with a structural relationship to graphite, the most commonly used anode material for lithium ion batteries. Since LiBC could accommodate three times as much lithium as graphite, its electrochemical properties in the anode and the cathode voltage range were investigated. However, LiBC did show poor performance both as an anode and as a cathode material. The unfavorable characteristics of LiBC with respect to electrochemical de-lithiation and re-insertion can be rationalized on the basis of nuclear magnetic resonance results. ~7Li and ~6Li isotropic chemical shifts are consistent with complete ionization of the lithium species. Variable-temperature static ~7Li NMR lineshapes indicate that the mobility of the lithium ions is rather restricted, even at temperatures up to 500 K. The ~(11)B and ~(13)C NMR parameters are consistent with those measured in sp ~2-hybridized boron/carbon networks and also support the ionic bonding model.
机译:由密封的铌安瓿中的元素合成LiBC。它代表了与石墨(一种锂离子电池最常用的负极材料)具有结构关系的完全嵌入的异石墨。由于LiBC可以容纳三倍于石墨的锂,因此研究了其在阳极和阴极电压范围内的电化学性能。但是,LiBC作为阳极和阴极材料的性能确实很差。 LiBC在电化学脱锂和重新插入方面的不利特性可以根据核磁共振结果得到合理化。 〜7Li和〜6Li各向同性化学位移与锂物质的完全电离一致。可变温度静态〜7Li NMR线形表明,即使在高达500 K的温度下,锂离子的迁移率也受到很大限制。〜(11)B和〜(13)C NMR参数与在sp〜中测得的参数一致。 2-杂交硼/碳网络,也支持离子键合模型。

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