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金属硅酸盐多孔空心纳米结构的通用简易合成法。

General and facile syntheses of metal silicate porous hollow nanostructures.

机构信息

State Key Laboratory for Physical Chemistry of Solid Surfaces and Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005 P.R. China.

出版信息

Chem Asian J. 2010 Jun 1;5(6):1439-44. doi: 10.1002/asia.200900561.

Abstract

Porous hollow nanostructures have attracted intensive interest owing to their unique structure and promising applications in various fields. A facile hydrothermal synthesis has been developed to prepare porous hollow nanostructures of silicate materials through a sacrificial-templating process. The key factors, such as the concentration of the free metal cation and the alkalinity of the solution, are discussed. Porous hollow nanostructures of magnesium silicate, nickel silicate, and iron silicate have been successfully prepared by using SiO(2) spheres as the template, as well as a silicon source. Several yolk-shell structures have also been fabricated by a similar process that uses silica-coated composite particles as a template. As-prepared mesoporous magnesium silicate hollow spheres showed an excellent ability to remove Pb(2+) ions in water treatment owing to their large specific surface and unique structures.

摘要

多孔中空纳米结构由于其独特的结构和在各个领域的广阔应用前景而引起了人们的浓厚兴趣。本研究采用一种简便的水热合成法,通过牺牲模板法制备了硅酸盐材料的多孔中空纳米结构。讨论了影响产物形貌的关键因素,如自由金属阳离子的浓度和溶液的碱度等。以 SiO2 球为模板和硅源,成功制备了硅酸镁、硅酸镍和硅酸铁的多孔中空纳米结构。采用类似的方法,以硅壳复合颗粒为模板,也制备了几种蛋黄壳结构。由于具有较大的比表面积和独特的结构,所制备的介孔硅酸镁中空球在水处理中对 Pb(2+)离子具有优异的去除能力。

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