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一种具有多个活性位点的新型多孔d-p HMOF材料,用于高效的CO捕获和催化。

A first new porous d-p HMOF material with multiple active sites for excellent CO capture and catalysis.

作者信息

Liu Jiao, Yang Guo-Ping, Jin Jing, Wu Dan, Ma Lu-Fang, Wang Yao-Yu

机构信息

Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of the Ministry of Education, Shaanxi Key Laboratory of Physico-Inorganic Chemistry, College of Chemistry & Materials Science, Northwest University, Xi'an 710127, P. R. China.

出版信息

Chem Commun (Camb). 2020 Feb 25;56(16):2395-2398. doi: 10.1039/c9cc09664g.

Abstract

In this work, a new monometallic metal-organic framework (MOF), namely {[Pb2(L)2(H2O)]·H2O}n (1), was prepared via a N,O-mixed 2-(imidazol-1-yl)terephthalic acid (H2L) ligand and Pb(ii) ions. Then, a first new porous d-p heterometallic MOF (HMOF), namely {[PbZn(L)2]·DMA·H2O}n (2), was yielded via Zn(ii) ions and MOF 1 as the precursor because of the different coordination affinity of oxygen and nitrogen atoms with various metal ions. MOF 1 is a condensed packing motif, whereas HMOF 2 is a porous three-dimensional (3D) framework with unsaturated Pb(ii) and Zn(ii) active sites, uncoordinated carboxylate oxygen atoms and two kinds of porous channels due to the introduction of Zn(ii) ions into the framework of MOF 1, which thus endowed HMOF 2 with excellent sorption and selectivity for CO2 over CH4. Moreover, HMOF 2 was explored to be an efficient heterogeneous catalyst for the fixation of CO2 with various epoxides because of the existence of the abundant unsaturated bimetallic sites as the Lewis acid. It is hoped that this work may supply an effective strategy to build plenty of d-p HMOF materials with excellent gas adsorption and catalytic properties.

摘要

在这项工作中,通过N,O混合的2-(咪唑-1-基)对苯二甲酸(H2L)配体和Pb(ii)离子制备了一种新型单金属金属有机框架(MOF),即{[Pb2(L)2(H2O)]·H2O}n(1)。然后,由于氧和氮原子与各种金属离子的配位亲和力不同,以Zn(ii)离子和MOF 1为前驱体,得到了第一种新型多孔d-p异金属MOF(HMOF),即{[PbZn(L)2]·DMA·H2O}n(2)。MOF 1是一种凝聚堆积结构,而HMOF 2是一种具有不饱和Pb(ii)和Zn(ii)活性位点、未配位羧酸根氧原子以及两种多孔通道的多孔三维(3D)框架,这是由于在MOF 1的框架中引入了Zn(ii)离子,从而赋予HMOF 2对CO2相对于CH4优异的吸附和选择性。此外,由于存在丰富的不饱和双金属位点作为路易斯酸,HMOF 2被探索为一种用于CO2与各种环氧化物固定反应的高效多相催化剂。希望这项工作可以提供一种有效的策略来构建大量具有优异气体吸附和催化性能的d-p HMOF材料。

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