首页> 外文期刊>Journal of Power Sources >Chemical properties of various organic electrolytes for lithium rechargeable batteries 1. Characterization of passivating layer formed on graphite in alkyl carbonate solutions
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Chemical properties of various organic electrolytes for lithium rechargeable batteries 1. Characterization of passivating layer formed on graphite in alkyl carbonate solutions

机译:锂二次电池用各种有机电解质的化学性质1.碳酸烷基酯溶液中石墨上形成的钝化层的表征

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The characteristics and reaction mechanisms of the passivating film formed on the surface of graphite were investigated in ethylene carbonate-diethyl carbonate solutions containing LiClO_4, LiPF_6 and LiN(SO_2CF_3)_2. The electron consumption resulting on the irreversible capacity of graphite was almost equivalent to that used in the one-electron reduction of Li~+ found in the film. The electrochemical reactions in the first discharge process may be divided into the following steps: (i) 'initial film formation step' from 1.4 to 0.55 V; (ii) 'main film formation step' from 0.55 to 0.2 V, and (iii) 'lithium intercalation step from 0.2 to 0.0 V. Most of the passivating film is formed together with the lithium intercalation reaction at step (ii). The passivating film formed at this step contained a significant amount of organic film such as EtOCO_2Li, (CH_2OCO_2Li)_2, etc. Through the consecutive formation of passivating film at steps (i) and (ii), lithium intercalation into graphite proceeds smoothly without further decomposition of the organic electrolyte.
机译:在含有LiClO_4,LiPF_6和LiN(SO_2CF_3)_2的碳酸亚乙酯-碳酸二乙酯溶液中研究了石墨表面钝化膜的特性和反应机理。由石墨的不可逆容量引起的电子消耗几乎等于在薄膜中发现的Li〜+的单电子还原所消耗的电子。第一放电过程中的电化学反应可以分为以下步骤:(i)“初始成膜步骤”为1.4至0.55V; (ii)“主膜形成步骤”为0.55至0.2V,以及(iii)“锂嵌入步骤”为0.2至0.0V。大多数钝化膜与锂嵌入步骤(ii)一起形成。在此步骤中形成的钝化膜包含大量的有机膜,例如EtOCO_2Li,(CH_2OCO_2Li)_2等。通过在步骤(i)和(ii)中连续形成钝化膜,锂可以顺利地嵌入到石墨中有机电解质分解。

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