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介孔硅酸盐作为在无过渡金属催化剂条件下生产碳纳米管的纳米反应器。

Mesoporous silicates as nanoreactors for carbon nanotube production in the absence of transition metal catalysts.

作者信息

Urbán Mónika, Kónya Zoltán, Méhn Dóra, Zhu Ji, Kiricsi Imre

机构信息

Applied and Environmental Chemistry Department, University of Szeged, Szeged, Hungary.

出版信息

J Nanosci Nanotechnol. 2003 Feb-Apr;3(1-2):111-9. doi: 10.1166/jnn.2003.198.

Abstract

Carbon nanotubes were produced from either a template or the polymer-filled pore systems of mesoporous silicates of various structures and dimensions by heat treatment in the absence of air. Successful synthesis was done when the template molecules contained little or no oxygen. For SBA-15 material, where the structure-directing molecule used for synthesis of mesoporous silicate was polyethylene oxide-polypropylene oxide-polyethylene oxide triblock copolymer, no carbon nanostructures were formed. A peculiar carbon nanostructure was generated from the template for pore expanded MCM-41. To demonstrate carbon nanotube formation from polymer in the mesoporous silicates, the mesopores of MCM-41, MCM-48, and SBA-15 silicates were filled with divinyl-benzene polymer and then graphitized at 1300 K. The polymer was successfully transformed into carbon nanotubes for the MCM class silicate but not the SBA-15 silicate.

摘要

在无氧条件下通过热处理,从模板或各种结构和尺寸的介孔硅酸盐的聚合物填充孔系统中制备碳纳米管。当模板分子含氧量很少或不含氧时,合成成功。对于SBA - 15材料,用于合成介孔硅酸盐的结构导向分子是聚环氧乙烷 - 聚环氧丙烷 - 聚环氧乙烷三嵌段共聚物,未形成碳纳米结构。从用于扩孔的MCM - 41模板中生成了一种特殊的碳纳米结构。为了证明介孔硅酸盐中聚合物形成碳纳米管,将MCM - 41、MCM - 48和SBA - 15硅酸盐的介孔用二乙烯基苯聚合物填充,然后在1300 K下进行石墨化处理。对于MCM类硅酸盐,聚合物成功转化为碳纳米管,但对于SBA - 15硅酸盐则未成功。

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