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使用非离子嵌段共聚物表面活性剂混合物合成复杂介孔硅:使用溶解度参数理解不同结构的形成。

Syntheses of complex mesoporous silicas using mixtures of nonionic block copolymer surfactants: understanding formation of different structures using solubility parameters.

机构信息

Materials Section and Supercritical Centre, Department of Chemistry, University College Cork, Cork, Ireland.

出版信息

J Colloid Interface Sci. 2011 Jan 1;353(1):169-80. doi: 10.1016/j.jcis.2010.09.043. Epub 2010 Sep 22.

Abstract

The use of block copolymer (BCP) nonionic surfactant mixtures (including Pluronic, Brij and Tetronic types) as templates for synthesizing porous silica materials of mixed pore sizes is explored here. These systems have important applications because combinations of pore sizes can allow rapid access of reactants (via large pores) whilst providing the very high surface area of small pores for higher reaction rates or size selectivity. Examples of the materials prepared here include pore size bimodal hexagonal p6mm channel structures and cubic Im3m cage structures. It is shown here that the chemical similarity, as indicated by the solubility parameter, of the surfactants is an important factor in determining the pore structure and size distribution (PSD) of the pores. Monomodal pore structures are usually obtained when the solubility parameters of the surfactants are similar and bimodal pore structures when the solubility parameters are reasonably different. When the interaction parameter is very high disordered porous systems are formed. Ternary co-surfactant systems, e.g. P123-25R4-P65, can also yield highly ordered bimodal mesoporous silica with a hexagonal structure.

摘要

本文探讨了使用嵌段共聚物(BCP)非离子表面活性剂混合物(包括 Pluronic、Brij 和 Tetronic 型)作为模板合成混合孔径多孔硅材料的方法。这些系统具有重要的应用价值,因为孔径的组合可以允许反应物快速进入(通过大孔),同时为更高的反应速率或尺寸选择性提供小孔的高表面积。这里制备的材料实例包括孔径双峰六方 p6mm 通道结构和立方 Im3m 笼状结构。结果表明,表面活性剂的化学相似性(由溶解度参数表示)是决定孔结构和孔径分布(PSD)的重要因素。当表面活性剂的溶解度参数相同时,通常会得到单峰孔结构,而当溶解度参数相差较大时,则会得到双峰孔结构。当相互作用参数非常高时,则会形成无序多孔体系。三元共表面活性剂体系,例如 P123-25R4-P65,也可以生成具有六方结构的高度有序双峰介孔硅。

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