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两种同构的URJC-4材料:从氢物理吸附到通过低压下氢分子活化实现的多相还原胺化反应。

Two Isostructural URJC-4 Materials: From Hydrogen Physisorption to Heterogeneous Reductive Amination through Hydrogen Molecule Activation at Low Pressure.

作者信息

Montes-Andrés Helena, Leo Pedro, Muñoz Antonio, Rodríguez-Diéguez Antonio, Orcajo Gisela, Choquesillo-Lazarte Duane, Martos Carmen, Martínez Fernando, Botas Juan A, Calleja Guillermo

机构信息

Department of Chemical, Energy and Mechanical Technology, Rey Juan Carlos University, C/Tulipán s/n, 28933 Mostoles, Spain.

Department of Chemical and Environmental Technology, Rey Juan Carlos University, C/Tulipán s/n, 28933 Mostoles, Spain.

出版信息

Inorg Chem. 2020 Nov 2;59(21):15733-15740. doi: 10.1021/acs.inorgchem.0c02127. Epub 2020 Oct 9.

Abstract

Herein, two novel isostructural metal-organic frameworks (MOFs) M-URJC-4 (M = Co, Ni; URJC = "Universidad Rey Juan Carlos") with open metal sites, permanent microposity, and large surface areas and pore volumes have been developed. These novel MOFs, with polyhedral morphology, crystallize in the monoclinic 2/ space group, exhibiting a three-dimensional structure with microporous channels along the axis. Initially, they were fully characterized and tested in hydrogen (H) adsorption at different conditions of temperature and pressure. The physisorption capacities of both materials surpassed the gravimetric H uptake shown by most MOF materials under the same conditions. On the basis of the outstanding adsorption properties, the Ni-URJC-4 material was used as a catalyst in a one-pot reductive amination reaction using various carbonyl compounds and primary amines. A possible chemical pathway to obtain secondary amines was proposed via imine formation, and remarkable performances were accomplished. This work evidences the dual ability of M-URJC-4 materials to be used as a H adsorbent and a catalyst in reductive amination reactions, activating molecular H at low pressures for the reduction of C═N double bonds and providing reference structural features for the design of new versatile heterogeneous materials for industrial application.

摘要

在此,已开发出两种具有开放金属位点、永久微孔性以及大表面积和孔体积的新型同构金属有机框架(MOF)M - URJC - 4(M = Co,Ni;URJC = “马德里胡安卡洛斯国王大学”)。这些具有多面体形态的新型MOF在单斜2/空间群中结晶,呈现出沿轴具有微孔通道的三维结构。最初,对它们进行了全面表征,并在不同温度和压力条件下测试了氢气(H₂)吸附性能。在相同条件下,这两种材料的物理吸附容量超过了大多数MOF材料所显示的重量法氢气吸收量。基于出色的吸附性能,Ni - URJC - 4材料被用作催化剂,用于使用各种羰基化合物和伯胺的一锅法还原胺化反应。通过亚胺形成提出了一种获得仲胺的可能化学途径,并取得了显著的反应效果。这项工作证明了M - URJC - 4材料在还原胺化反应中作为氢气吸附剂和催化剂的双重能力,即在低压下活化分子氢以还原C═N双键,并为设计用于工业应用的新型多功能多相材料提供了参考结构特征。

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