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A Review: Fundamental Aspects of Silicate Mesoporous Materials

机译:综述:硅酸盐中孔材料的基本方面

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摘要

Silicate mesoporous materials have received widespread interest because of their potential applications as supports for catalysis, separation, selective adsorption, novel functional materials, and use as hosts to confine guest molecules, due to their extremely high surface areas combined with large and uniform pore sizes. Over time a constant demand has developed for larger pores with well-defined pore structures. Silicate materials, with well-defined pore sizes of about 2.0–10.0 nm, surpass the pore-size constraint (<2.0 nm) of microporous zeolites. They also possess extremely high surface areas (>700 m2 g−1) and narrow pore size distributions. Instead of using small organic molecules as templating compounds, as in the case of zeolites, long chain surfactant molecules were employed as the structure-directing agent during the synthesis of these highly ordered materials. The structure, composition, and pore size of these materials can be tailored during synthesis by variation of the reactant stoichiometry, the nature of the surfactant molecule, the auxiliary chemicals, the reaction conditions, or by post-synthesis functionalization techniques. This review focuses mainly on a concise overview of silicate mesoporous materials together with their applications. Perusal of the review will enable researchers to obtain succinct information about microporous and mesoporous materials.
机译:硅酸盐中孔材料由于其潜在的应用作为催化,分离,选择性吸附,新型功能材料的载体,并由于其极高的表面积以及大而均匀的孔径而被用作限制客体分子的载体,因此受到了广泛的关注。随着时间的流逝,对具有明确的孔结构的较大孔的需求不断增长。硅酸盐材料的孔径定义明确,约为2.0-10.0 nm,超过了微孔沸石的孔径限制(<2.0 nm)。它们还具有极高的表面积(> 700 m 2 g -1 )和狭窄的孔径分布。代替在沸石的情况下使用小的有机分子作为模板化合物,在这些高度有序的材料的合成过程中,将长链表面活性剂分子用作结构导向剂。这些材料的结构,组成和孔径可在合成过程中通过改变反应物化学计量,表面活性剂分子的性质,辅助化学品,反应条件或通过合成后官能化技术进行定制。这篇综述主要集中在硅酸盐介孔材料及其应用的简要概述。综述的概述将使研究人员能够获得有关微孔和中孔材料的简洁信息。

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