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Influence of graphite surface properties on the first electrochemical lithium intercalation

机译:石墨表面性能对第一次电化学锂嵌入的影响

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The electrochemical insertion of lithium ions into graphite materials having different surface chemistry and defect concentration was studied during the first cycle in half-cell containing 1M LiPF6 in an electrolytic solvent mixture of ethylene carbonate (EC) and dimethyl carbonate (DMC). The graphite surface properties were varied by thermal treatments in either hydrogen, oxygen, or nitrogen oxide or chemical treatment in boiling nitric acid. The influence of the surface modifications on the course of the first electrolyte reduction was investigated. The surface group chemistry was analyzed by temperature-programmed desorption coupled with mass spectrometry. The surface defect concentration was determined in terms of the active surface area (ASA) measured by oxygen chemisorption and a subsequent temperature-programmed desorption. The experimental results showed that the ASA parameter governs the exfoliation tendency of the graphite negative electrode material with the existence of a critical value below which the graphite systematically exfoliates. The specific charge loss during the first electrochemical insertion of lithium and the exfoliation behavior of the graphite negative electrode material are not influenced by the type and amount of oxygen surface groups. But hydrogen present on the graphite surface increased the graphite exfoliation tendency even for graphite materials with an ASA above the critical value.
机译:在第一个循环中,在碳酸亚乙酯(EC)和碳酸二甲酯(DMC)的混合溶剂中,在含有1M LiPF6的半电池中研究了锂离子在具有不同表面化学和缺陷浓度的石墨材料中的电化学插入。通过在氢气,氧气或一氧化氮中进行热处理或在沸腾的硝酸中进行化学处理来改变石墨的表面性能。研究了表面改性对第一次电解质还原过程的影响。通过程序升温脱附和质谱分析表面基团化学。根据通过氧化学吸附和随后的程序升温脱附测量的活性表面积(ASA)确定表面缺陷浓度。实验结果表明,ASA参数控制着石墨负极材料的剥落趋势,并且存在一个临界值,在该临界值以下,石墨会系统地剥落。锂的第一次电化学插入过程中的比电荷损失和石墨负极材料的剥离行为不受氧表面基团的类型和数量的影响。但是,即使对于ASA高于临界值的石墨材料,存在于石墨表面的氢也会增加石墨的剥落趋势。

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