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Combined in- and ex situ studies of pyrazine adsorption into the aliphatic MOF Al-CAU-13: structures, dynamics and correlations

机译:吡嗪在脂族MOF Al-CAU-13中的吸附原位和异位研究:结构,动力学和相关性

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摘要

The intercalation of different pyrazines (pyrazine, methylpyrazine, 2,5-dimethylpyrazine, 2,3-dimethylpyrazine, trimethylpyrazine and tetramethylpyrazine) into the trans-1,4-cyclohexanedicarboxylate (CDC$^{2−}$) based Al-MOF [Al(OH)(CDC)], denoted as CAU-13, was investigated. The adsorption of the guest molecules into the flexible MOF was carried out from an aqueous solution or via vapour phase adsorption, starting with the hydrated narrow-pore form of the framework [Al(OH)(O$_2$C-C$_6$H$_{10}$-CO$_2$)]·H$_2$O (CAU-13-np). The obtained host–guest systems were characterised by thermogravimetry and vibrational spectroscopy and their crystal structures were elucidated using powder X-ray diffraction (PXRD) data. The crystal structures indicate that guest molecules forming hydrogen-bonds with the host framework (pyrazine, methylpyrazine and 2,5-dimethylpyrazine) induce a slight opening of the channels, resulting in a semi-open framework conformation (CAU-13-so). For the bulkier guests 2,3-dimethylpyrazine, trimethylpyrazine and tetramethylpyrazine, only van der Waals interactions can be observed between the host and the guest molecules and a large pore conformation is observed (CAU-13-lp). We carried out in situ PXRD studies using synchrotron radiation during the adsorption of the respective guest molecules from aqueous solutions with various concentrations and at different temperatures. In general, stronger host–guest interactions required milder adsorption conditions while harsher conditions nevertheless accelerated the conversion. The kinetic parameters for the intercalation of pyrazine indicate that the rate limiting step differs, depending on the intercalation temperature.
机译:将不同的吡嗪(吡嗪,甲基吡嗪,2,5-二甲基吡嗪,2,3-二甲基吡嗪,三甲基吡嗪和四甲基吡嗪)嵌入反式1,4-环己烷二甲酸酯(CDC $ ^ {2-}})的Al-MOF [研究了表示为CAU-13的Al(OH)(CDC)]。客体分子从水溶液中或通过气相吸附,从水合窄孔形式的骨架[Al(OH)(O $ _2 $ CC $ _6 $ H $ _ {10} $-CO $ _2 $)]·H $ _2 $ O(CAU-13-np)。通过热重分析和振动光谱对获得的主客体系统进行了表征,并使用粉末X射线衍射(PXRD)数据阐明了它们的晶体结构。晶体结构表明与主体框架形成氢键的客体分子(吡嗪,甲基吡嗪和2,5-二甲基吡嗪)诱导通道的轻微开放,从而导致半开放框架构象(CAU-13-so)。对于体积较大的客体2,3-二甲基吡嗪,三甲基吡嗪和四甲基吡嗪,只能在主体和客体分子之间观察到范德华相互作用,并且观察到大的孔构象(CAU-13-lp)。我们在从不同浓度和不同温度的水溶液中吸附相应客体分子的过程中,使用同步加速器辐射进行了原位PXRD研究。通常,较强的主客互动需要较温和的吸附条件,而较苛刻的条件仍会加速转化。吡嗪插层的动力学参数表明限速步骤因插层温度而异。

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