首页> 外文期刊>Acta Crystallographica, Section B. Structural science, crystal engineering and materials >Entrance and diffusion pathway of CO2 and dimethyl ether in silicalite-1 zeolite channels as determined by single-crystal XRD structural analysis
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Entrance and diffusion pathway of CO2 and dimethyl ether in silicalite-1 zeolite channels as determined by single-crystal XRD structural analysis

机译:通过单晶XRD结构分析确定CO 2和二甲醚在silicalite-1沸石通道中的进入和扩散途径

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摘要

The entrance and diffusion pathway of CO_2 and dimethyl ether (DME) in MFI-type zeolite channels were investigated by a selective sealing method using large silicalite-1 crystals. The MFI-type zeolite has two kinds of orthogonal channels: straight channels and sinusoidal channels. The mouths of the straight channels are on (010) crystal faces, while those of the sinusoidal channels are on (100) faces. The channel mouths are directly sealed by silicone resin on the (100) and (010) faces so as to restrict the entrance and diffusion pathways to straight and sinusoidal channel pathways, respectively. The locations and loadings of the guest CO_2 and DME molecules are determined by single-crystal X-ray diffraction structural analysis. The loadings show the difference of the adsorption rates between the pathways. The straight channel pathway is 4.2 times faster than the sinusoidal channel pathway for the CO_2, and the sinusoidal channel pathway is 5.1 times faster than the straight channel pathway for the DME. It reveals their dominant pathways and the anisotropy of adsorption. The dominant pathway correlates to the stability of the channel as adsorption sites.
机译:通过使用大型silicalite-1晶体的选择性密封方法研究了CO_2和二甲醚(DME)在MFI型沸石通道中的进入和扩散路径。 MFI型沸石具有两种正交通道:直通道和正弦通道。直通道的嘴在(010)晶面上,而正弦通道的嘴在(100)晶面上。通道口由硅树脂直接密封在(100)和(010)面上,从而分别将进入和扩散通道限制为直线和正弦通道。通过单晶X射线衍射结构分析确定客体CO_2和DME分子的位置和负载。负载显示出路径之间吸附速率的差异。对于CO_2,直通道通道比正弦通道通道快4.2倍,对于DME,正弦通道通道比直通道通道快5.1倍。它揭示了它们的主要途径和吸附的各向异性。主导途径与作为吸附位点的通道的稳定性相关。

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