Tailored syntheses of nanostructured silicas: Control of particle morphology, particle size and pore size

Gunter Büchel , Michael Grün , Klaus K. Unger , Akihiko Matsumoto , Kazuo Tsutsumi
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引用次数: 95

Abstract

Ordered mesoporous silicas with spherical morphology and average particle size in the range between 100 nm and 2 μm were synthesised according to two novel routes. Both synthesis routes used tetraethoxysilane, water, alcohol and aqueous ammonia for producing spherical silica beads. The porosity was created by adding two different kinds of pore structure directing agents to the starting solution: one was an n-alkyltrialkoxysilane which was covalently bonded to the silica framework, the other was an n-alkylamine which acted as a nonionic template. After calcination and post treatment the resulting particles showed a specific surface area up to 1000 m2 g-1, a specific pore volume of up to 0.8 cm3g-1 and an average pore diameter between 2 and 6 nm.

纳米结构二氧化硅的定制合成:颗粒形态、粒径和孔径的控制
采用两种新工艺合成了球形有序介孔二氧化硅,平均粒径在100 nm ~ 2 μm之间。两种合成路线都使用四乙氧基硅烷、水、酒精和水氨来生产球形硅珠。孔隙是通过在起始溶液中加入两种不同的孔结构导向剂来产生的:一种是与二氧化硅框架共价键合的正烷基三烷氧基硅烷,另一种是作为非离子模板的正烷基胺。煅烧后的颗粒比表面积可达1000 m2 g-1,比孔体积可达0.8 cm3g-1,平均孔径在2 ~ 6 nm之间。
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