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多孔玻璃制备的具有分级多孔结构的硅质整体材料。

Silica monoliths with hierarchical porosity obtained from porous glasses.

机构信息

Institute of Chemical Reaction Engineering, University of Erlangen-Nuremberg, Egerlandstrasse 3, D-91058 Erlangen, Germany.

出版信息

Chem Soc Rev. 2013 May 7;42(9):3753-64. doi: 10.1039/c2cs35304k. Epub 2012 Oct 19.

Abstract

This review deals with "classical" porous glasses which are prepared by physical phase separation of alkali borosilicate glasses of suitable composition in combination with selective leaching. The resulting materials are characterized by a controllable pore size in the nanometer range, high mechanical, thermal and chemical stability and an adjustable macroscopic shape, which enables manufacturing of glass monoliths with various geometries. As a result of their formation, porous glasses obtained from physical phase separation exhibit a monomodal pore structure. There are only a few examples in the literature for the synthesis of hierarchically porous glasses. This review covers several synthesis strategies for the introduction of hierarchy into "classical" porous glass monoliths, including sintering and fusion of alkali borosilicate initial glasses as well as partial or complete pseudomorphic transformation of porous glasses into zeolites or ordered mesoporous materials.

摘要

这篇综述涉及“经典”多孔玻璃,它是通过具有合适组成的碱硼硅酸盐玻璃的物理相分离与选择性浸出相结合制备的。所得材料的特点是纳米级可控孔径、高机械、热和化学稳定性以及可调节的宏观形状,这使得能够制造具有各种几何形状的玻璃整体。由于它们的形成,通过物理相分离获得的多孔玻璃表现出单模态的孔结构。文献中只有少数几个关于分级多孔玻璃合成的例子。本综述涵盖了几种将分级结构引入“经典”多孔玻璃整体的合成策略,包括碱硼硅酸盐初始玻璃的烧结和熔融以及多孔玻璃向沸石或有序介孔材料的部分或完全拟晶转变。

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