Triconstituent co-assembly to ordered mesostructured polymer-silica and carbon-silica nanocomposites and large-pore mesoporous carbons with high surface areas

Ruili Liu;益峰 施;Ying Wan;Yan Meng;Fuqiang Zhang;Dong Gu;Zhenxia Chen;波 屠;东元 赵

Fudan University;Shanghai Normal University

发表时间:2006-9-6

期 刊:Journal of the American Chemical Society

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=33748360107&partnerID=8YFLogxK

摘要

Highly ordered mesoporous polymer-silica and carbon-silica nanocomposites with interpenetrating networks have been successfully synthesized by the evaporation-induced triconstituent co-assembly method, wherein soluble resol polymer is used as an organic precursor, prehydrolyzed TEOS is used as an inorganic precursor, and triblock copolymer F127 is used as a template. It is proposed for the first time that ordered mesoporous nanocomposites have "reinforced concrete"-structured frameworks. By adjusting the initial mass ratios of TEOS to resol, we determined the obtained nanocomposites possess continuous composition with the ratios ranging from zero to infinity for the two constituents that are "homogeneously" dispersed inside the pore walls. The presence of silicates in nanocomposites dramatically inhibits framework shrinkage during the calcination, resulting in highly ordered large-pore mesoporous carbon-silica nanocomposites. Combustion in air or etching in HF solution can remove carbon or silica from the carbon-silica nanocomposites and yield ordered mesoporous pure silica or carbon frameworks. The process generates plenty of small pores in carbon or/and silica pore walls. Ordered mesoporous carbons can then be obtained with large pore sizes of ∼6.7 nm, pore volumes of ∼2.0 cm3/g, and high surface areas of ∼2470 m2/g. The pore structures and textures can be controlled by varying the sizes and polymerization degrees of two constituent precursors. Accordingly, by simply tuning the aging time of TEOS, ordered mesoporous carbons with evident bimodal pores at 2.6 and 5.8 nm can be synthesized.

相关科学

生物化学、遗传学和分子生物学
生物化学
化学工程
催化
胶体与表面化学
化学

被引量

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年份 CiteScore SJR SNIP
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1999 3.438 2.116
2000 3.589 2.149
2001 3.506 2.118
2002 3.587 2.326
2003 3.421 2.236
2004 3.841 2.199
2005 4.413 2.205
2006 4.662 2.229
2007 5.202 2.137
2008 5.06 2.114
2009 4.958 2.205
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2011 16.1 5.478 2.326
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2020 25.1 7.115 2.605
2021 22

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