首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Flexible and porous 2D layered structures based on mixed-linker metal-organic frameworks for gas sorption studies
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Flexible and porous 2D layered structures based on mixed-linker metal-organic frameworks for gas sorption studies

机译:基于混合接头金属 - 有机框架的柔性和多孔的2D层状结构,用于气吸附研究

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摘要

Layered structures of flexible mixed-linker metal-organic frameworks termed IRHs-(4 and 5) (IRH = Institut de Recherche sur l'Hydrogene) were synthesized by mixing cyclam, tetrakis(4-carboxyphenyl) benzene (TCPB), and copper and zinc metal salts respectively. The new materials characterized by single-crystal X-ray diffraction exhibited the features of HOFs and MOFs. Their structures are formed by coordination and hydrogen bonds that link metallocyclam (with Cu or Zn) and TCPB to a 2D sheet which is further packed to form a 3D structure with 1D microchannels. Remarkably, the as-synthesized IRHs-(4 and 5) contain DMF in the channels that can be exchanged with DCM and afterward removed from the framework by heating without losing their single-crystallinity. This enabled an easy elucidation of the structural transformations by single-crystal and powder X-ray diffraction analyses. Experimental studies of single-component adsorption isotherms of pure CO2, CH4, and N-2 gases have been carried out for all activated IRHs. Based on the obtained adsorption isotherms, theoretical calculations using Ideal Adsorbed Solution Theory (IAST) have been performed to predict the selectivity of equimolar CO2/CH4 and CO2/N-2 (1 : 1) binary mixtures. The simulations predicted outstanding selectivity for CO2/N-2 than for CO2/CH4 at low pressures, reaching 185 for IRH-4 and 130 for IRH-5 at 1 bar.
机译:通过分别混合环胺、四(4-羧基苯基)苯(TCPB)以及铜和锌金属盐,合成了称为IRHs-(4和5)的柔性混合连接剂金属有机框架的层状结构(IRH=氢化研究所)。经单晶X射线衍射表征的新材料具有HOFs和MOFs的特征。它们的结构是通过配位和氢键形成的,这些配位和氢键将金属环AM(含Cu或Zn)和TCPB连接到一个2D薄片上,该2D薄片进一步填充,形成具有一维微通道的3D结构。值得注意的是,合成的IRH-(4和5)在通道中含有DMF,可以与DCM交换,然后通过加热将其从框架中移除,而不会失去其单结晶性。这使得通过单晶和粉末X射线衍射分析可以很容易地阐明结构转变。对所有活化的IRH进行了纯CO2、CH4和N-2气体的单组分吸附等温线的实验研究。根据获得的吸附等温线,利用理想吸附溶液理论(IAST)进行了理论计算,以预测等摩尔CO2/CH4和CO2/N-2(1:1)二元混合物的选择性。模拟预测,在低压下,CO2/N-2的选择性比CO2/CH4好,IRH-4达到185,IRH-5在1巴时达到130。

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