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Soft templating strategies for the synthesis of mesoporous materials: Inorganic, organic-inorganic hybrid and purely organic solids

机译:介孔材料合成的软模板策略:无机,有机-无机杂化和纯有机固体

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摘要

With the discovery of MCM-41 by Mobil researchers in 1992 the journey of the research on mesoporous materials started and in the 21st century this area of scientific investigation have extended into numerous branches, many of which contribute significantly in emerging areas like catalysis, energy, environment and biomedical research. As a consequence thousands of publications came out in large varieties of national and international journals. In this review, we have tried to summarize the published works on various synthetic pathways and formation mechanisms of different mesoporous materials viz. inorganic, organic-inorganic hybrid and purely organic solids via soft templating pathways. Generation of nanoscale porosity in a solid material usually requires participation of organic template (more specifically surfactants and their supramolecular assemblies) called structure-directing agent (SDA) in the bottom-up chemical reaction process. Different techniques employed for the syntheses of inorganic mesoporous solids, like silicas, metal doped silicas, transition and non-transition metal oxides, mixed oxides, metallophosphates, organic-inorganic hybrids as well as purely organicmesoporous materials like carbons, polymers etc. using surfactants are depicted schematically and elaborately in this paper. Moreover, some of the frontline applications of these mesoporous solids,which are directly related to their functionality, composition and surface properties are discussed at the appropriate places.
机译:随着Mobil研究人员在1992年发现MCM-41,开始了中孔材料研究的旅程,并且在21世纪,这一科学研究领域已经扩展到许多分支,其中许多在诸如催化,能源,环境和生物医学研究。结果,成千上万的出版物出现在各种各样的国家和国际期刊上。在这篇综述中,我们试图总结关于不同介孔材料的各种合成途径和形成机理的已发表著作。无机,有机-无机杂化和纯有机固体通过软模板路径。在固体材料中产生纳米级孔隙率通常需要在自下而上的化学反应过程中参与称为结构导向剂(SDA)的有机模板(更具体地讲是表面活性剂及其超分子组装)的参与。使用表面活性剂合成无机介孔固体(例如二氧化硅,掺杂金属的二氧化硅,过渡和非过渡金属氧化物,混合氧化物,金属磷酸盐,有机-无机杂化物以及纯有机中孔材料,例如碳,聚合物等)的不同技术是本文对此进行了示意性地阐述。此外,在适当的地方讨论了与这些介孔固体的功能,组成和表面性质直接相关的一些前线应用。

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