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A porous lanthanide metal-organic framework based on a flexible cyclotriphosphazene-functionalized hexacarboxylate exhibiting selective gas adsorption

机译:基于柔性环三磷腈官能化六羧酸盐的多孔镧系金属有机骨架,表现出选择性气体吸附

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Design and synthesis of robust porous lanthanide-based metal-organic frameworks (Ln-MOFs) from flexible organic ligands is currently a formidable task to chemists. In this work, a porous Ln-MOF based on a flexible cyclotriphosphazene-functionalized organic ligand, hexakis.4-carboxylatephenoxy) cyclotriphosphazene, has been solvothermally synthesized. Single-crystal X-ray diffraction analyses show that the compound exhibits a three-dimensional structure built from rod-shaped secondary building units which are linked to each other through the organic ligands to form open frameworks with rectangular channels along the crystallographic a direction. Remarkably, although the flexible ligand was used, the Ln-MOF material after desolvation exhibited permanent porosity which has been established by various gas adsorption isotherms, displaying selective adsorption of C-2 hydrocarbons over CH4 at room temperature. This work presents a rare example of a permanently porous Ln-MOF based on a flexible ligand exhibiting selective gas adsorption behaviours.
机译:从柔性有机配体设计和合成鲁棒的基于多孔镧系元素的金属有机骨架(Ln-MOF),目前对化学家来说是一项艰巨的任务。在这项工作中,已经溶剂热合成了基于柔性环三磷腈官能化的有机配体,六(4-羧酸酯苯氧基)环三磷腈的多孔Ln-MOF。单晶X射线衍射分析表明,该化合物显示出由杆状二级结构单元构建的三维结构,该杆状二级结构单元通过有机配体相互连接,形成沿晶体学a方向具有矩形通道的开放骨架。值得注意的是,尽管使用了柔性配体,但去溶剂化后的Ln-MOF材料却表现出永久孔隙率,该孔隙率是由各种气体吸附等温线确定的,在室温下,CH-2上选择性吸附了C-2碳氢化合物。这项工作提出了一个罕见的永久性Ln-MOF的例子,该永久性Ln-MOF基于具有选择性气体吸附行为的柔性配体。

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