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Why Dimethyl Carbonate Is Better Co-Solvent Than Other Linear Carbonates: Important Role of Polar Conformer Formation

机译:为什么碳酸二甲酯比其他线性碳酸酯更好的共溶剂:极性塑造剂形成的重要作用

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The underlying nature of the ion conduction in concentrated battery electrolytes still remains elusive. An archetypal example is a long-standing puzzle why a dimethyl carbonate (DMC) solution exhibit higher ionic conductivity than other linear carbonate (LC) solutions despite the similar physicochemical properties of the LC solvents. To address this, we investigate the correlation between the conformation isomer formation and salt dissociation behavior in 0.1 M-3.0 M LiPF_6 DMC, ethyl methyl carbonate, and diethyl carbonate solutions using Raman spectroscopy, dielectric relaxation spectroscopy, and pfg-NMR. Importantly, we corroborate that compared to the other two LCs, DMC more readily dissociates Li-salt into free, conducting ions. The higher salt-dissociation ability of DMC was attributed to the extensive formation of polar cis-trans conformer participating in Li-ion solvation compared to non-polar cis-cis conformer. This study unveils the critical role of the solvent isomerism in the ion-solvation chemistry, suggesting an avenue to achieve highly conductive electrolytes for rechargeable batteries.
机译:浓缩电池电解质中离子传导的根本性仍然难以实现。镜片实例是一种长时间的拼图,为什么碳酸二甲酯(DMC)溶液表现出比其他线性碳酸盐(LC)溶液更高的离子电导率,尽管LC溶剂的物理化学性质相似。为了解决这一点,我们研究了使用拉曼光谱,介电弛豫光谱和PFG-NMR在0.1M-3.0M LiPF_6 DMC,碳酸甲酯和碳酸二乙酯溶液中的构象异构体形成和盐解离行为之间的相关性。重要的是,与其他两个LCS相比,我们证实了,DMC更容易将Li-Salt分离为自由,导电离子。与非极性CIS-CIS蜂窝形式相比,DMC的盐溶解能力归因于参与锂离子溶剂的极性顺式转化器的广泛形成。本研究推出了溶剂异构中的离子溶剂化学在离子溶剂化学中的关键作用,旨在实现用于可充电电池的高导电电解质的途径。

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