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用于多相液相催化的多孔金属硅酸盐:前景与相关挑战

Porous metallosilicates for heterogeneous, liquid-phase catalysis: perspectives and pertaining challenges.

作者信息

Hammond Ceri, Padovan Daniele, Tarantino Giulia

机构信息

Cardiff Catalysis Institute, Cardiff University, Park Place, Cardiff CF10 3AT, UK.

出版信息

R Soc Open Sci. 2018 Feb 7;5(2):171315. doi: 10.1098/rsos.171315. eCollection 2018 Feb.

Abstract

Porous silicates containing dilute amounts of tri-, tetra- and penta-valent metal sites, such as TS-1, Sn-β and Fe-ZSM-5, have recently emerged as state of the art catalysts for a variety of sustainable chemical transformations. In contrast with their aluminosilicate cousins, which are widely employed throughout the refinery industry for gas-phase catalytic transformations, such metallosilicates have exhibited unprecedented levels of performance for a variety of liquid-phase catalytic processes, including the conversion of biomass to chemicals, and sustainable oxidation technologies with HO. However, despite their unique levels of performance for these new types of chemical transformations, increased utilization of these promising materials is complicated by several factors. For example, their utilization in a liquid, and often polar, medium hinders process intensification (scale-up, catalyst deactivation). Moreover, such materials do not generally exhibit the active-site homogeneity of conventional aluminosilicates, and they typically possess a wide variety of active-site ensembles, only some of which may be directly involved in the catalytic chemistry of interest. Consequently, mechanistic understanding of these catalysts remains relatively low, and competitive reactions are commonly observed. Accordingly, unified approaches towards developing more active, selective and stable porous metallosilicates have not yet been achieved. Drawing on some of the most recent literature in the field, the purpose of this mini review is both to highlight the breakthroughs made with regard to the use of porous metallosilicates as heterogeneous catalysts for liquid-phase processing, and to highlight the pertaining challenges that we, and others, aim to overcome during the forthcoming years.

摘要

含有少量三价、四价和五价金属位点的多孔硅酸盐,如TS-1、Sn-β和Fe-ZSM-5,最近已成为用于各种可持续化学转化的先进催化剂。与在炼油行业广泛用于气相催化转化的铝硅酸盐同类物不同,这类金属硅酸盐在各种液相催化过程中表现出了前所未有的性能水平,包括生物质转化为化学品以及使用过氧化氢的可持续氧化技术。然而,尽管它们在这些新型化学转化中具有独特的性能水平,但这些有前景的材料的更多应用却因几个因素而变得复杂。例如,它们在液体(通常是极性)介质中的使用阻碍了过程强化(放大、催化剂失活)。此外,这类材料一般不具有传统铝硅酸盐的活性位点均匀性,它们通常拥有各种各样的活性位点组合,其中只有一些可能直接参与感兴趣的催化化学过程。因此,对这些催化剂的机理理解仍然相对较少,并且通常会观察到竞争反应。相应地,尚未实现开发更具活性、选择性和稳定性的多孔金属硅酸盐的统一方法。借鉴该领域一些最新文献,本综述的目的是既要突出在将多孔金属硅酸盐用作液相加工的多相催化剂方面取得的突破,也要突出我们以及其他研究人员在未来几年旨在克服的相关挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bb9/5830738/df1cf48c9693/rsos171315-g1.jpg

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