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Mesoporous mixed oxide catalysts via non-hydrolytic sol-gel: A review

机译:非水解溶胶-凝胶介孔混合氧化物催化剂的研究进展

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Despite the enormous amount of research dedicated to this topic in the last 20 years or so, there is still a need for a general, cost-effective methodology allowing the synthesis of mesoporous mixed oxide catalysts. This review deals with the synthesis and catalytic applications of mixed oxides prepared by the non-hydrolytic sol-gel (NHSG) process based on the reaction of chloride precursors with ether or alkoxide oxygen donors. This NHSG process of fers Simple, one-step syntheses of mixed oxides with well-controlled compositions and non-ordered mesoporous textures, avoiding the use of supercritical drying or templates. Over the last decade, this process has been used to prepare various mesoporous mixed oxide catalysts, which showed real potential in major reactions such as partial and total oxidation, reduction of NO_x, alkene metathesis, or alkylation. The main reactions involved in this NHSG process and the characteristics of the resulting mixed oxides are described in the first part of this review, underlining the decisive advantages in terms of Simplicity and of control (in terms of composition, homogeneity or texture) of fered by this process. In a second part, the literature dealing with mixed oxide catalysts prepared by this NHSG method is exhaustively reviewed and the catalytic performance of NHSG catalysts is compared, whenever possible, to that of catalysts with Similar compositions prepared by other methods. The excellent catalytic performances of NHSG-catalysts (notably Si—Ti, Ti—V and Si—Al—Mo catalysts) compared to state-of-the art aerogels or ordered mesoporous materials evidences the potential of this sol-gel method, which should open the door to the synthesis of improved catalysts and to the discovery of new catalysts.
机译:尽管在过去约20年中为此主题进行了大量研究,但仍需要一种通用的,具有成本效益的方法来合成介孔混合氧化物催化剂。本文综述了基于氯化物前体与醚或醇盐氧供体的反应,通过非水解溶胶-凝胶(NHSG)工艺制备的混合氧化物的合成和催化应用。这种NHSG工艺可以简单,一步地合成具有良好控制的成分和无序介孔织构的混合氧化物,避免了使用超临界干燥或模板。在过去的十年中,该方法已用于制备各种介孔混合氧化物催化剂,这些催化剂在主要反应如部分和全部氧化,NO_x的还原,烯烃的复分解或烷基化等主要反应中显示出真正的潜力。在本综述的第一部分中描述了该NHSG过程中涉及的主要反应以及所得混合氧化物的特性,强调了简单易行,控制性强(组成,均质性或质地)方面的决定性优势。这个流程。在第二部分中,详尽地回顾了有关通过该NHSG方法制备的混合氧化物催化剂的文献,并在可能的情况下将NHSG催化剂的催化性能与通过其他方法制备的具有相似组成的催化剂进行了比较。与最先进的气凝胶或有序介孔材料相比,NHSG催化剂(特别是Si-Ti,Ti-V和Si-Al-Mo催化剂)的出色催化性能证明了这种溶胶-凝胶法的潜力为合成改良的催化剂和发现新的催化剂打开了大门。

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