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基于配体延伸的两种三维金属有机骨架的合成、结构和性质。

Synthesis, structures, and properties of two three-dimensional metal-organic frameworks, based on concurrent ligand extension.

机构信息

School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, People's Republic of China.

出版信息

Inorg Chem. 2012 Jun 18;51(12):6498-506. doi: 10.1021/ic202624e. Epub 2012 Jun 6.

Abstract

A tritopic carboxylate ligand, tris(4'-carboxybiphenyl)amine (L-H(3)), has been synthesized and applied in the construction of microporous metal-organic frameworks (MOFs). Two novel metal-organic frameworks (MOFs), {[Zn(2)(L)(OH)]·2DMF·H(2)O}(∞) (1) and {[Cu(L-H)(DMA)]·DMA·2H(2)O}(∞) (2), have been constructed out of L-H(3), Zn(2+), and Cu(2+), respectively. 1 has a 2-fold interpenetrating three-dimensional framework formed by L connectors and the [Zn(2)(CO(2))(3)] secondary building units (SBUs). As for 1, it is worth pointing out that one μ(2)-OH group links two Zn atoms between two neighboring SBUs to produce interesting Zn-O-Zn zigzag chains in the structure. 2 has a two-dimensional grid sheet formed by L-H connectors and the typical paddle-wheel [Cu(2)(CO(2))(4)] SBUs. Two-dimensional (2D) sheets nest with each other, which finally forms a three-dimensional (3D) nested framework. Two MOFs are characterized by infrared (IR) spectroscopy, thermogravimetry, single-crystal and elemental analyses, and powder X-ray diffraction methods. Framework 1' exhibits high permanent porosity (Langmuir surface area = 848 m(2)/g), high thermal stability (up to 450 °C), highly active properties for Friedel-Crafts alkylation reaction, as well as the potential application for the CO(2) gas storage and luminescent material. The catalytic results reveal that 2' is indeed an efficient heterogeneous catalyst for olefin epoxidation reactions.

摘要

三齿羧酸配体,三(4'-羧基联苯)胺(L-H(3))已被合成并应用于微孔金属-有机骨架(MOFs)的构建。两种新型金属-有机骨架(MOFs),{[Zn2(L)(OH)]·2DMF·H2O}(∞)(1)和{[Cu(L-H)(DMA)]·DMA·2H2O}(∞)(2),分别由 L-H(3),Zn2+和 Cu2+构建而成。1 具有由 L 连接体和[Zn2(CO2)3]次级建筑单元(SBU)形成的 2 倍互穿的三维骨架。对于 1,值得指出的是,一个μ(2)-OH 基团连接两个相邻 SBU 之间的两个 Zn 原子,在结构中产生有趣的 Zn-O-Zn 锯齿链。2 具有由 L-H 连接体和典型的桨轮[Cu2(CO2)4]SBU 形成的二维网格片。二维(2D)片相互嵌套,最终形成三维(3D)嵌套骨架。两种 MOFs 通过红外(IR)光谱,热重分析,单晶和元素分析以及粉末 X 射线衍射方法进行了表征。骨架 1'表现出高的永久孔隙率(Langmuir 比表面积= 848 m2/g),高的热稳定性(高达 450°C),对 Friedel-Crafts 烷基化反应的高活性,以及用于 CO2 气体存储和发光材料的潜在应用。催化结果表明,2'确实是烯烃环氧化反应的高效多相催化剂。

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