介孔材料硅基移动组合物的合成、表征及应用进展

Badoor M. Kurji, Iqbal M. Mujtaba, Ammar S. Abbas
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引用次数: 0

摘要

硅基介孔材料是一类具有孔隙结构有序、比表面积大、孔体积大等独特特点的多孔材料。本文综述了不同类型的多孔材料(沸石和介孔)以及介孔材料的物理性质,使其具有工业应用价值。介孔材料可分为两大类:硅基介孔材料和非硅基介孔材料。在硅基介孔材料中,最著名的是介孔分子筛家族,由于其有益的性能而受到人们的关注。该家族包括三个成员,根据它们的孔隙排列进行区分。本文综述了美孚介孔分子筛家族在催化剂、吸附剂和药物传递剂等方面的主要应用。讨论了介孔分子筛材料的合成、二氧化硅的来源、模板的重要性以及合成机理。该材料家族的成员具有许多物理化学特性,这些特性与它们的高二氧化硅含量、晶体结构和孔隙排列密切相关。通常,该家族的成员具有大表面积,高孔隙体积,小孔径,窄而均匀的粒度分布。这些特性使许多工业应用和科学研究机会进一步开发现有材料或制造新材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis, Characterizations, and Recent Applications of the Silica-based Mobil Composition of Mesoporous Material: A Review
Silica-based mesoporous materials are a class of porous materials with unique characteristics such as ordered pore structure, large surface area, and large pore volume. This review covers the different types of porous material (zeolite and mesoporous) and the physical properties of mesoporous materials that make them valuable in industry. Mesoporous materials can be divided into two groups: silica-based mesoporous materials and non-silica-based mesoporous materials. The most well-known family of silica-based mesoporous materials is the Mesoporous Molecular Sieves family, which attracts attention because of its beneficial properties. The family includes three members that are differentiated based on their pore arrangement. In this review, the major applications of the Mobil Mesoporous Molecular Sieves family, such as catalysts, adsorbents, and drug delivery agents, have been surveyed. Furthermore, the synthesis of the Mesoporous Molecular Sieves materials, the silica sources, the importance of templates, and the mechanisms of the synthesis are discussed herein. Members of this material family are characterized by many physicochemical properties that are closely related to their high silica content, crystalline structure, and pore arrangement. Commonly, the members of this family have large surface areas, high pore volumes, small pore sizes, and narrow and uniform particle size distributions. These properties enable numerous industrial applications and opportunities for scientific studies to further develop existing materials or manufacture new ones.
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