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首页> 外文期刊>Angewandte Chemie >Building Organic/Inorganic Hybrid Interphases for Fast Interfacial Transport in Rechargeable Metal Batteries
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Building Organic/Inorganic Hybrid Interphases for Fast Interfacial Transport in Rechargeable Metal Batteries

机译:建筑有机/无机混合间晶间用于可充电金属电池的快速界面输送

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摘要

We report a facile in situ synthesis that utilizes readily accessible SiCl4 cross-linking chemistry to create durable hybrid solid-electrolyte interphases (SEIs) on metal anodes. Such hybrid SEIs composed of Si-interlinked OOCOR molecules that host LiCl salt exhibit fast charge-transfer kinetics and as much as five-times higher exchange current densities, in comparison to their spontaneously formed analogues. Electrochemical analysis and direct optical visualization of Li and Na deposition in symmetric Li/Li and Na/Na cells show that the hybrid SEI provides excellent morphological control at high current densities (3-5 mA cm(-2)) for Li and even for notoriously unstable Na metal anodes. The fast interfacial transport attributes of the SEI are also found to be beneficial for Li-S cells and stable electrochemical cycling was achieved in galvanostatic studies at rates as high as 2 C. Our work therefore provides a promising approach towards rational design of multifunctional, elastic SEIs that overcome the most serious limitations of spontaneously formed interphases on high-capacity metal anodes.
机译:我们在原位合成中报告了一个容易的合成,其利用易于访问的SiCl4交联化学来在金属阳极上产生耐用的杂化固体电解质晶间(SEI)。与其自发形成的类似物相比,由宿主宿主宿主表现出快速电荷转移动力学的Si互连的oo孔分子组成的杂种SEI。对称Li / Li和Na / Na细胞中Li和Na沉积的电化学分析和直接光学可视化表明,Hybrid Sei在Li甚至用于Li的高电流密度(3-5 mA cm(-2))处提供优异的形态对照臭名昭着的不稳定的na金属阳极。 SEI的快速界面传输属性也有益于Li-S细胞,并且在高达2℃的速率下达到稳定的电化学循环,因此我们的工作为多功能,弹性设计提供了有希望的理性设计方法。 SEIS克服了在高容量金属阳极上自发形成的差异最严重的局限性。

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