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铈基金属有机框架材料的化学性质。

The chemistry of Ce-based metal-organic frameworks.

作者信息

Jacobsen Jannick, Ienco Andrea, D'Amato Roberto, Costantino Ferdinando, Stock Norbert

机构信息

Institute of Inorganic Chemistry, Christian-Albrechts-Universität, Max-Eyth Straße 2, D-24118 Kiel, Germany.

出版信息

Dalton Trans. 2020 Dec 8;49(46):16551-16586. doi: 10.1039/d0dt02813d.

Abstract

Metal-organic frameworks (MOFs) have gained widespread attention due to their modular construction that allows the tuning of their properties. Within this vast class of compounds, metal carboxylates containing tri- and tetravalent metal ions have been in the focus of many studies due to their often high thermal and chemical stabilities. Cerium has a rich chemistry, which depends strongly on its oxidation state. Ce(iii) exhibits properties typically observed for rare earth elements, while Ce(iv) is mostly known for its oxidation behaviour. In MOF chemistry this is reflected in their unique optical and catalytic properties. The synthetic parameters for Ce(iii)- and Ce(iv)-MOFs also differ substantially and conditions must be chosen to prevent reduction of Ce(iv) for the formation of the latter. Ce(iii)-MOFs are usually reported in comprehensive studies together with those constructed with other RE elements and normally they are isostructural. They exhibit a greater structural diversity, which is reflected in the larger variety of inorganic building units. In contrast, the synthesis conditions of Ce(iv)-MOFs were only recently (2015) established. These lead selectively to hexanuclear Ce-O clusters that are well-known for Zr-MOFs and therefore very similar structural and isoreticluar chemistry is found. Hence Ce(iv)-MOFs exhibit often high porosity, while only a few porous Ce(iii)-MOFs have been described. Some of these show structural flexibility which makes them interesting for separation processes. For Ce(iv)-MOFs the redox properties are most relevant. Thus, they are intensively discussed for catalytic, photocatalytic and sensing applications. In this perspective, the synthesis, structural chemistry and properties of Ce-MOFs are summarized.

摘要

金属有机框架材料(MOFs)因其模块化结构能够对其性质进行调控而受到广泛关注。在这一庞大的化合物类别中,含有三价和四价金属离子的金属羧酸盐由于其通常具有较高的热稳定性和化学稳定性,成为了许多研究的焦点。铈具有丰富的化学性质,这在很大程度上取决于其氧化态。Ce(III)表现出稀土元素通常具有的性质,而Ce(IV)则主要以其氧化行为而闻名。在MOF化学中,这体现在它们独特的光学和催化性质上。Ce(III)-MOFs和Ce(IV)-MOFs的合成参数也有很大差异,必须选择合适的条件以防止Ce(IV)还原以形成后者。Ce(III)-MOFs通常在与其他稀土元素构建的综合研究中被报道,并且它们通常是同构的。它们表现出更大的结构多样性,这反映在更多种类的无机建筑单元上。相比之下,Ce(IV)-MOFs的合成条件直到最近(2015年)才得以确立。这些条件选择性地导致形成六核Ce-O簇,这在Zr-MOFs中是众所周知的,因此发现了非常相似的结构和等规化学。因此,Ce(IV)-MOFs通常具有高孔隙率,而只有少数多孔Ce(III)-MOFs被描述过。其中一些表现出结构灵活性,这使得它们在分离过程中很有趣。对于Ce(IV)-MOFs,氧化还原性质最为相关。因此,它们在催化、光催化和传感应用方面受到了深入讨论。从这个角度出发,总结了Ce-MOFs的合成、结构化学和性质。

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