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金属有机框架的单晶到单晶金属化:通往结构明确的催化剂的途径。

Single-crystal-to-single-crystal metalation of a metal-organic framework: a route toward structurally well-defined catalysts.

作者信息

Gonzalez Miguel I, Bloch Eric D, Mason Jarad A, Teat Simon J, Long Jeffrey R

机构信息

Department of Chemistry, University of California , Berkeley, California 94720, United States.

出版信息

Inorg Chem. 2015 Mar 16;54(6):2995-3005. doi: 10.1021/acs.inorgchem.5b00096. Epub 2015 Feb 26.

Abstract

Metal-organic frameworks featuring ligands with open chelating groups are versatile platforms for the preparation of a diverse set of heterogeneous catalysts through postsynthetic metalation. The crystalline nature of these materials allows them to be characterized via X-ray diffraction, which provides valuable insight into the structure of the metal sites that facilitate catalysis. A highly porous and thermally robust zirconium-based metal-organic framework, Zr6O4(OH)4(bpydc)6 (bpydc(2-) = 2,2'-bipyridne-5,5'-dicarboxylate), bears open bipyridine sites that readily react with a variety of solution- and gas-phase metal sources to form the corresponding metalated frameworks. Remarkably, Zr6O4(OH)4(bpydc)6 undergoes a single-crystal-to-single-crystal transformation upon metalation that involves a change in space group from Fm3̅m to Pa3̅. This structural transformation leads to an ordering of the metalated linkers within the framework, allowing structural characterization of the resulting metal complexes. Furthermore, Zr6O4(OH)4(bpydc)6 yields an active heterogeneous catalyst for arene C-H borylation when metalated with [Ir(COD)2]BF4 (COD = 1,5-cyclooctadiene). These results highlight the unique potential of metal-organic frameworks as a class of heterogeneous catalysts that allow unparalleled structural characterization and control over their active sites.

摘要

具有开放螯合基团配体的金属有机框架是通过后合成金属化制备各种多相催化剂的通用平台。这些材料的晶体性质使其能够通过X射线衍射进行表征,这为促进催化作用的金属位点结构提供了有价值的见解。一种高度多孔且热稳定的锆基金属有机框架Zr6O4(OH)4(bpydc)6(bpydc(2-) = 2,2'-联吡啶-5,5'-二羧酸酯)具有开放的联吡啶位点,可与多种溶液相和气相金属源轻松反应,形成相应的金属化框架。值得注意的是,Zr6O4(OH)4(bpydc)6在金属化时会发生单晶到单晶的转变,涉及空间群从Fm3̅m变为Pa3̅。这种结构转变导致框架内金属化连接体的有序排列,从而能够对所得金属配合物进行结构表征。此外,当用[Ir(COD)2]BF4(COD = 1,5-环辛二烯)进行金属化时,Zr6O4(OH)4(bpydc)6可生成用于芳烃C-H硼化的活性多相催化剂。这些结果突出了金属有机框架作为一类多相催化剂的独特潜力,这类催化剂能够对其活性位点进行无与伦比的结构表征和控制。

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