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一种高效的水相合成高多孔纳米γ-Al2O3 的路线:从稳定的勃姆石胶体到大孔介孔氧化铝。

An efficient route to aqueous phase synthesis of nanocrystalline γ-Al2O3 with high porosity: from stable boehmite colloids to large pore mesoporous alumina.

机构信息

Université de Toulouse, CIRIMAT UPS-CNRS, 118 route de Narbonne, 31062 Toulouse Cedex 9, France.

出版信息

J Colloid Interface Sci. 2012 Feb 1;367(1):120-8. doi: 10.1016/j.jcis.2011.08.087. Epub 2011 Oct 25.

Abstract

In this paper we emphasise the important role of Pluronic F127 on the porosity of mesoporous alumina prepared from boehmite colloids. By focusing on the F127/boehmite interactions we show how the concepts of interface science may help to predict and improve the textural characteristics of mesoporous alumina. By varying the synthetic parameters, in particular the copolymer content, we show that the porosity of γ-Al(2)O(3) can be enhanced by 400% and the average pore diameter can be expanded from 5 to 14 nm. These results are discussed in terms of interactions between the Pluronic F127 and boehmite colloids, and are correlated to the critical micelle concentration (CMC) of the copolymer. The textural characteristics of the mesoporous alumina can be further improved either by introducing hydrocarbons in the preformed boehmite/copolymer sols or by concentrating the sols. In comparison with as-synthesised alumina, those prepared with F127 showed improved thermal stability. Furthermore, boehmite/copolymer sols were stable for all surfactant concentrations investigated and can give high quality coatings suitable for catalytic applications.

摘要

在本文中,我们强调了 Pluronic F127 在介孔氧化铝中的重要作用,这些氧化铝是由勃姆石胶体制备而成。通过关注 F127/勃姆石的相互作用,我们展示了界面科学的概念如何有助于预测和改善介孔氧化铝的结构特性。通过改变合成参数,特别是共聚物的含量,我们发现γ-Al(2)O(3)的孔隙率可以提高 400%,平均孔径可以从 5nm 扩展到 14nm。这些结果是根据 Pluronic F127 和勃姆石胶体之间的相互作用讨论的,并与共聚物的临界胶束浓度(CMC)相关。通过在预形成的勃姆石/共聚物溶胶中引入烃类或浓缩溶胶,可以进一步改善介孔氧化铝的结构特性。与合成的氧化铝相比,那些用 F127 制备的氧化铝显示出更好的热稳定性。此外,在研究的所有表面活性剂浓度下,勃姆石/共聚物溶胶都很稳定,可以得到适合催化应用的高质量涂层。

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