Department of Energy Engineering, Hanyang University, 222 Wangsimni-ro, Seongdong-gu, Seoul, 133-791 (Korea).
ChemSusChem. 2015 Feb;8(4):688-94. doi: 10.1002/cssc.201402907. Epub 2015 Jan 9.
Mesoporous silicon-based materials gained considerable attention as high-capacity lithium-storage materials. However, the practical use is still limited by the complexity and limited number of available synthetic routes. Here, we report carbon-coated porous SiOx as high capacity lithium storage material prepared by using a sol-gel reaction of hydrogen silsesquioxane and oil-water templating. A hydrophobic oil is employed as a pore former inside the SiOx matrix and a precursor for carbon coating on the SiOx . The anode exhibits a high capacity of 730 mAh g(-1) and outstanding cycling performance over 100 cycles without significant dimensional changes. Carbon-coated porous SiOx also showed highly stable thermal reliability comparable to that of graphite. These promising properties come from the mesopores in the SiOx matrix, which ensures reliable operation of lithium storage in SiOx . The scalable sol-gel process presented here can open up a new avenue for the versatile preparation of porous SiOx lithium storage materials.
介孔硅基材料作为高容量锂离子存储材料引起了广泛关注。然而,其实际应用仍然受到合成路线复杂和数量有限的限制。在这里,我们报告了一种通过氢硅倍半氧烷的溶胶-凝胶反应和油水模板制备的具有高容量锂离子存储能力的碳包覆多孔氧化硅。在氧化硅基体内部使用疏油剂作为孔形成剂和碳在氧化硅上的包覆前体。该阳极具有 730 mAh g(-1) 的高容量和超过 100 次循环的出色循环性能,没有明显的尺寸变化。碳包覆多孔氧化硅还表现出与石墨相当的高度稳定的热可靠性。这些优异的性能来自于氧化硅基体中的介孔,这确保了氧化硅中锂离子存储的可靠运行。这里提出的可扩展溶胶-凝胶工艺为多孔氧化硅锂离子存储材料的多功能制备开辟了新途径。