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Study of the Hydrate-Melt/Li4Ti5O12 Interphase by Scanning Electron Microscopy-Based Spectroscopy

机译:基于扫描电子显微镜的光谱分析水合物 - 熔融/ Li4Ti5O12的研究

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摘要

To develop safe and low-cost Li-ion batteries (LIBs), recently, an aqueous-based electrolyte so-called "hydrate-melt" (HDM) electrolyte is proposed. Li4Ti5O12 is a promising negative electrode material for a LIB with such a HDM electrolyte because of its unexpected reversible Li insertion and extraction properties without usually inevitable water reduction. The solid-electrolyte interphase formation is one of the reasons for this stable reaction, although a detailed analysis is not yet performed. Here, a Li4Ti5O12 electrode surface reacted in a HDM electrolyte is investigated by scanning electron microscopy-based analysis. Surface reaction products are clearly observed on the Li4Ti5O12 surface after the Li insertion reaction in a HDM electrolyte. Energy-dispersive X-ray spectroscopy and Auger electron spectroscopy indicated that the products do not contain any components originated from Li salts, whereas anion-derived passivation films seem to cover a bare surface below the products. Further, the surface products are identified as Li2O by the feature of Li-K-edge reflection electron energy-loss spectrum. The Li2O formation would be one of the key issues for stable Li insertion and extraction of a Li4Ti5O12 electrode in a HDM electrolyte.
机译:为了开发安全和低成本的锂离子电池(LIBS),最近,提出了一种水基电解质所谓的“水合物 - 熔融”(HDM)电解质。 Li4Ti5O12是具有这种HDM电解质的LiB的承诺负极材料,因为其意外的可逆性Li插入和萃取性能而没有通常不可避免的水还原。尽管尚未进行详细分析,但固体电解质相互相同形成是该稳定反应的原因之一。这里,通过扫描基于电子显微镜的分析来研究在HDM电解质中反应的Li4Ti5O12电极表面。在HDM电解质中的Li插入反应后,在Li4Ti5O12表面上清楚地观察到表面反应产物。能量分散X射线光谱和螺旋钻电子光谱表明,产品不含源自Li盐的任何组分,而阴离子衍生的钝化膜似乎覆盖了产品下方的裸露的表面。此外,通过Li-K边缘反射电子能损光谱的特征识别表面产物作为Li2O。 Li2O形成是HDM电解质中稳定Li插入和提取Li4Ti5O12电极的关键问题之一。

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