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Inside information on xenon adsorption in porous organic cages by NMR

机译:通过NMR了解氙在多孔有机笼中的吸附的内部信息

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摘要

A solid porous molecular crystal formed from an organic cage, CC3, has unprecedented performance for the separation of rare gases. Here, xenon was used as an internal reporter providing extraordinarily versatile information about the gas adsorption phenomena in the cage and window cavities of the material. 129Xe NMR measurements combined with state-of-the-art quantum chemical calculations allowed the determination of the occupancies of the cavities, binding constants, thermodynamic parameters as well as the exchange rates of Xe between the cavities. Chemical exchange saturation transfer (CEST) experiments revealed a minor window cavity site with a significantly lower exchange rate than other sites. Diffusion measurements showed significantly reduced mobility of xenon with loading. 129Xe spectra also revealed that the cage cavity sites are preferred at lower loading levels, due to more favourable binding, whereas window sites come to dominate closer to saturation because of their greater prevalence.
机译:由有机笼CC3形成的固态多孔分子晶体在分离稀有气体方面具有空前的性能。在这里,氙气被用作内部报告器,提供有关该材料的笼状结构和窗腔中气体吸附现象的极其多方面的信息。 129 Xe NMR测量与最新的量子化学计算相结合,可以确定腔的占有率,结合常数,热力学参数以及腔之间Xe的交换率。化学交换饱和转移(CEST)实验揭示了一个较小的窗口腔位点,其交换速率明显低于其他位点。扩散测量显示氙气随负载的迁移率大大降低。 129 Xe光谱还显示,笼状腔位点在较低的负载水平下是首选,因为其结合更有利,而窗口位点由于其较高的患病率逐渐趋于饱和。

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