eni s.p.a., Research Centre for Non Conventional Energy - Istituto Eni Donegani, Via Fauser 4, I-28100 Novara, Italy.
Chem Soc Rev. 2013 May 7;42(9):3956-76. doi: 10.1039/c2cs35244c.
The discovery of ordered mesoporous materials has opened great opportunities for new applications in heterogeneous catalysis, thanks to their hitherto unprecedented intrinsic structural features. Evidence shows that, however, these materials have not met the researchers' expectations mainly because of the severe limitations related to the strength of acid sites and to the thermal/hydrothermal stability, significantly lower than those of zeolites and due to the amorphous nature of the mesostructured materials. These features are highlighted in the first part of this review, where the peculiarities of mesostructured materials are compared with those of zeolite catalysts in some reactions of industrial interest. New synthesis strategies, especially designed for preparing materials with improved physico-chemical and textural properties, together with the catalytic features of the resulting materials, are described and discussed in the second part of the review.
有序介孔材料的发现为多相催化中的新应用开辟了巨大的机会,这要归功于其前所未有的内在结构特征。有证据表明,然而,这些材料并没有达到研究人员的期望,主要是因为酸位强度和热/水热稳定性的严重限制,其强度明显低于沸石,并且由于介孔材料的无定形性质。在这篇综述的第一部分中,对介孔材料的特性与沸石催化剂在一些工业感兴趣的反应中的特性进行了比较,突出了这些特性。在综述的第二部分中,描述并讨论了专门设计用于制备具有改进的物理化学和结构性能的材料的新合成策略,以及所得材料的催化特性。