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首页> 外文期刊>ACS applied materials & interfaces >Ligand-Based Phase Control in Porous Molecular Assemblies
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Ligand-Based Phase Control in Porous Molecular Assemblies

机译:多孔分子组件中基于配体的相控制

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摘要

Functionalization of isophthalic acid ligands with linear alkoxide groups from ethoxy through pentoxy is shown to have a pronounced effect on both the synthesis of porous paddlewheel-based molecular assemblies and their resulting surface areas and gas adsorption properties. Shorter chain length is compatible with either tetragonal or hexagonal two-dimensional materials, with the hexagonal phase favored with longer chain length. Precise tuning of reaction conditions affords discrete molecular species that are soluble in a variety of organic solvents. The isolated porous molecules display BET surface areas ranging from 125 m(2)/g to 545 m(2)/g. The pentoxide-based molecular assembly shows considerable promise for the separation of hydrocarbons with average isosteric heats of adsorption of -48 and -31 kJ/mol for ethylene and ethane, respectively.
机译:通过乙氧基通过氟氧基与乙氧基的线性醇酸配体的官能化具有关于基于多孔桨轮的分子组件的合成及其所得表面积和气体吸附性能的显着作用。 较短的链长与四方或六边形二维材料兼容,六边形相对于长链长度有利于。 精确调整反应条件提供离散的分子物质,可溶于各种有机溶剂。 隔离的多孔分子显示出从125μm(2)/ g至545m(2)/ g的BET表面积。 基于五氧化氧基的分子组件,分别为乙烯和乙烷分别分离具有-48和-31kJ / mol的平均基位溶液的碳氢化合物的相当大的承诺。

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