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一步温和制备多孔核壳结构 Si@TiO 纳米复合材料,用作高性能锂离子电池阳极。

One-step mild fabrication of porous core-shelled Si@TiO nanocomposite as high performance anode for Li-ion batteries.

机构信息

Institute for Advanced Interdisciplinary Research, Shandong Provincial Key Laboratory of Fluorine Chemistry and Chemical Materials, University of Jinan, Jinan 250022, Shandong Province, China.

Institute for Advanced Interdisciplinary Research, Shandong Provincial Key Laboratory of Fluorine Chemistry and Chemical Materials, University of Jinan, Jinan 250022, Shandong Province, China.

出版信息

J Colloid Interface Sci. 2019 Feb 15;536:171-179. doi: 10.1016/j.jcis.2018.10.029. Epub 2018 Oct 13.

Abstract

Nanoporous Si@TiO composites with the unique core-shell architecture are conveniently fabricated through one-step selective dealloying of SiTiAl ternary alloy under mild conditions. The as-prepared composites consist of bimodal Si network skeleton as the core and interconnected TiO nanosponge layer as the shell uniformly distribute on the Si surface to form the porous core-shelled structure. The nanoporous TiO as the outer protective layer not only reduce the violent volume change of electrode materials for stable cycling performance but also shorten the diffusion distance of Li for high rate capacities. The inner bimodal porous Si possesses an open bicontinuous network structure that can provide the enough empty space and robust backbone to relax the volume variation of composite and guarantee the sufficient electrode-electrolyte contact area. As a result, the optimized nanoporous Si@TiO composite delivers the reversible capacity of 1338.1 and 1174.4 mA h g at the current densities of 200 and 1000 mA g after continuous tests for 120 and 100 cycles, respectively. With the advantages of easy preparation, unique architecture, and high lithium storage performances, the porous core-shelled Si@TiO composites demonstrate the promising application potential as an anode material for LIBs.

摘要

通过在温和条件下对 SiTiAl 三元合金进行一步选择性脱合金化,方便地制备了具有独特核壳结构的纳米多孔 Si@TiO 复合材料。所制备的复合材料由双模态 Si 网络骨架作为核,以及均匀分布在 Si 表面的互连 TiO 纳米海绵层作为壳组成,形成多孔核壳结构。纳米多孔 TiO 作为外层保护层不仅降低了电极材料的剧烈体积变化,从而实现稳定的循环性能,而且缩短了 Li 的扩散距离,实现了高倍率容量。内部的双模态多孔 Si 具有开放的双连续网络结构,能够提供足够的空间和坚固的骨架来缓解复合材料的体积变化,并保证足够的电极-电解质接触面积。结果,优化后的纳米多孔 Si@TiO 复合材料在连续测试 120 次和 100 次后,在 200 和 1000 mA g 的电流密度下分别表现出 1338.1 和 1174.4 mA h g 的可逆容量。多孔核壳 Si@TiO 复合材料具有制备简便、独特结构和高储锂性能等优点,展示了作为 LIB 阳极材料的应用潜力。

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