Xia Wei, Qiu Bin, Xia Dingguo, Zou Ruqiang
College of Engineering, Peking University, Haidian District, Beijing 100871, P R China.
Sci Rep. 2013;3:1935. doi: 10.1038/srep01935.
Porous carbon materials have numerous applications due to their thermal and chemical stability, high surface area and low densities. However, conventional preparing porous carbon through zeolite or silica templates casting has been criticized by the costly and/or toxic procedure. Creating three-dimensional (3D) carbon products is another challenge. Here, we report a facile way to prepare porous carbons from metal-organic gel (MOG) template, an extended metal-organic framework (MOF) structure. We surprisingly found that the carbon products inherit the highly porous nature of MOF and combine with gel's integrated character, which results in hierarchical porous architectures with ultrahigh surface areas and quite large pore volumes. They exhibit considerable hydrogen uptake and excellent electrochemical performance as cathode material for lithium-sulfur battery. This work provides a general method to fast and clean synthesis of porous carbon materials and opens new avenues for the application of metal-organic gel in energy storage.
多孔碳材料因其热稳定性和化学稳定性、高比表面积及低密度而有众多应用。然而,通过沸石或二氧化硅模板铸造来制备传统多孔碳受到了成本高昂和/或程序有毒的批评。制造三维(3D)碳产品是另一项挑战。在此,我们报告了一种从金属有机凝胶(MOG)模板(一种扩展的金属有机框架(MOF)结构)制备多孔碳的简便方法。我们惊奇地发现,碳产品继承了MOF的高度多孔性质,并与凝胶的整体特性相结合,从而产生具有超高比表面积和相当大孔体积的分级多孔结构。它们作为锂硫电池的阴极材料表现出可观的氢吸收量和优异的电化学性能。这项工作提供了一种快速且清洁地合成多孔碳材料的通用方法,并为金属有机凝胶在能量存储中的应用开辟了新途径。