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用于地球丰富金属催化 C-H 胺化和加氢的坚固多孔β-二酮腙功能化金属有机骨架。

Robust and Porous β-Diketiminate-Functionalized Metal-Organic Frameworks for Earth-Abundant-Metal-Catalyzed C-H Amination and Hydrogenation.

机构信息

Department of Chemistry, University of Chicago , 929 East 57th Street, Chicago, Illinois 60637, United States.

出版信息

J Am Chem Soc. 2016 Mar 16;138(10):3501-9. doi: 10.1021/jacs.5b13394. Epub 2016 Mar 1.

Abstract

We have designed a strategy for postsynthesis installation of the β-diketiminate (NacNac) functionality in a metal-organic framework (MOF) of UiO-topology. Metalation of the NacNac-MOF (I) with earth-abundant metal salts afforded the desired MOF-supported NacNac-M complexes (M = Fe, Cu, and Co) with coordination environments established by detailed EXAFS studies. The NacNac-Fe-MOF catalyst, I•Fe(Me), efficiently catalyzed the challenging intramolecular sp(3) C-H amination of a series of alkyl azides to afford α-substituted pyrrolidines. The NacNac-Cu-MOF catalyst, I•Cu(THF), was effective in promoting the intermolecular sp(3) C-H amination of cyclohexene using unprotected anilines to provide access to secondary amines in excellent selectivity. Finally, the NacNac-Co-MOF catalyst, I•Co(H), was used to catalyze alkene hydrogenation with turnover numbers (TONs) as high as 700,000. All of the NacNac-M-MOF catalysts were more effective than their analogous homogeneous catalysts and could be recycled and reused without a noticeable decrease in yield. The NacNac-MOFs thus provide a novel platform for engineering recyclable earth-abundant-element-based single-site solid catalysts for many important organic transformations.

摘要

我们设计了一种在 UiO 拓扑结构的金属有机骨架(MOF)中进行β-二酮亚胺(NacNac)功能后合成安装的策略。用丰富的地球金属盐对 NacNac-MOF(I)进行金属化,得到所需的 MOF 负载的 NacNac-M 配合物(M = Fe、Cu 和 Co),详细的 EXAFS 研究确定了它们的配位环境。NacNac-Fe-MOF 催化剂 I•Fe(Me) 高效地催化一系列烷基叠氮化物的挑战性分子内 sp(3) C-H 氨化反应,生成α取代的吡咯烷。NacNac-Cu-MOF 催化剂 I•Cu(THF) 有效地促进环己烯的分子间 sp(3) C-H 氨化反应,使用未保护的苯胺提供高选择性的仲胺。最后,NacNac-Co-MOF 催化剂 I•Co(H) 用于催化烯烃加氢反应,其周转率(TON)高达 700,000。所有的 NacNac-M-MOF 催化剂都比它们的同类均相催化剂更有效,可以回收和重复使用,而产率没有明显下降。因此,NacNac-MOF 为许多重要的有机转化提供了一种新型的可回收、富含地球元素的单原子固体催化剂的工程平台。

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