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吸附热力学对纳米多孔晶体材料中客体扩散系数的影响。

Influence of adsorption thermodynamics on guest diffusivities in nanoporous crystalline materials.

机构信息

Van't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.

出版信息

Phys Chem Chem Phys. 2013 Jun 7;15(21):7994-8016. doi: 10.1039/c3cp50449b. Epub 2013 Apr 29.

DOI:10.1039/c3cp50449b
PMID:23628965
Abstract

Published experimental data, underpinned by molecular simulations, are used to highlight the strong influence of adsorption thermodynamics on diffusivities of guest molecules inside ordered nanoporous crystalline materials such as zeolites, metal-organic frameworks (MOFs), and zeolitic imidazolate frameworks (ZIFs). For cage-type structures (e.g. LTA, CHA, DDR, and ZIF-8), the variation of the free energy barrier for inter-cage hopping across the narrow windows, -δFi, provides a rationalization of the observed strong influence of pore concentrations, ci, on diffusivities. In open structures with large pore volumes (e.g. FAU, IRMOF-1, CuBTC) and within channels (MFI, BEA, MgMOF-74, MIL-47, MIL-53), the pore concentration (ci) dependence of the self- (Di,self), Maxwell-Stefan (Đi), and Fick (Di) diffusivities are often strongly dictated by the inverse thermodynamic correction factor, 1/Γi≡∂ln ci/∂ln pi; the magnitudes of the diffusivities are dictated by the binding energies for adsorption. For many guest-host combinations Đi-ci dependence is directly related to the 1/Γivs. ci variation. When molecular clustering occurs, we get 1/Γi > 1, causing unusual Đivs. ci dependencies. The match, or mis-match, between the periodicity of the pore landscape and the conformations of adsorbed chain molecules often leads to non-monotonic variation of diffusivities with chain lengths.

摘要

发表的实验数据,辅以分子模拟,用于强调吸附热力学对客体分子在有序纳米多孔晶体材料(如沸石、金属有机骨架 (MOF) 和沸石咪唑酯骨架 (ZIF))内部扩散的强烈影响。对于笼型结构(例如 LTA、CHA、DDR 和 ZIF-8),跨窄窗口的笼间跃迁自由能势垒的变化 -δFi,为观察到的孔浓度 ci 对扩散系数的强烈影响提供了合理化解释。在具有大孔体积的开放结构中(例如 FAU、IRMOF-1、CuBTC)和通道内(MFI、BEA、MgMOF-74、MIL-47、MIL-53),自扩散系数(Di,self)、麦克斯韦-斯蒂芬扩散系数(Đi)和菲克扩散系数(Di)的 ci 依赖性通常强烈取决于热力学修正因子 1/Γi≡∂ln ci/∂ln pi 的倒数;扩散系数的大小取决于吸附的结合能。对于许多客体-主体组合,Đi-ci 依赖性直接与 1/Γivs.ci 变化相关。当分子聚类发生时,我们得到 1/Γi > 1,导致不寻常的 Đi-ci 依赖性。孔景观的周期性与吸附链分子的构象之间的匹配或不匹配常常导致扩散系数随链长的非单调变化。

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