首页> 外文会议>International Symposium on Nanoporous Materials; 20050607-10; Niagara Falls(CA) >Synthesis of hollow spherical mesoporous N-doped carbon materials with graphitic framework
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Synthesis of hollow spherical mesoporous N-doped carbon materials with graphitic framework

机译:具有石墨骨架的空心球形中孔氮掺杂碳材料的合成

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Mesostructured carbon hollow spheres were prepared via a chemical vapour deposition (CVD) nanocasting route which utilized mesoporous silica SBA-15 spheres as sacrificial solid template and acetonitrile as carbon source. The hollow spheres were obtained when CVD derived silica/carbon composites were subjected to silica etching in hydrofluoric (HF) acid. The use of acetonitrile as carbon source resulted in N-doped (CNx type) materials with nitrogen content of up to 7.8 wt%. The mesostructured carbon hollow spheres have high surface area and pore volume (up to 780 m~2/g and 0.66 cm~3/g respectively) and in addition exhibit high levels of graphitization in the pore walls. The pore size of the hollow spheres was varied (between 2 and 5 nm) by changing the nature of spherical SBA-15 silica used as template.
机译:通过化学气相沉积(CVD)纳米浇铸路线制备了介孔结构的碳空心球,该方法使用介孔二氧化硅SBA-15球作为牺牲性固体模板,并以乙腈作为碳源。当将CVD衍生的二氧化硅/碳复合材料在氢氟酸(HF)中进行二氧化硅蚀刻时,获得了空心球。使用乙腈作为碳源会导致氮含量高达7.8 wt%的N掺杂(CNx型)材料。介孔结构的碳空心球具有较高的表面积和孔体积(分别高达780 m〜2 / g和0.66 cm〜3 / g),并且在孔壁中具有高石墨化水平。通过改变用作模板的球形SBA-15二氧化硅的性质,可以改变中空球的孔径(2至5 nm)。

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