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MOF-5中氢吸附的从头算研究。

Ab initio study of hydrogen adsorption in MOF-5.

作者信息

Sillar Kaido, Hofmann Alexander, Sauer Joachim

机构信息

Institut für Chemie, Humboldt-Universität zu Berlin, Berlin, Germany.

出版信息

J Am Chem Soc. 2009 Mar 25;131(11):4143-50. doi: 10.1021/ja8099079.

Abstract

Metal-organic frameworks (MOFs) are promising adsorbents for hydrogen storage. Density functional theory and second-order Møller-Plesset perturbation theory (MP2) are used to calculate the interaction energies between H(2) and individual structural elements of the MOF-5 framework. The strongest interaction, DeltaH(77) = -7.1 kJ/mol, is found for the alpha-site of the OZn(4)(O(2)Ph)(6) nodes. We show that dispersion interactions and zero-point vibrational energies must be taken into account. Comparison of calculations done under periodic boundary conditions for the complete structure with those done for finite models cut from the MOF-5 framework shows that the interactions with H(2) originate mainly from the local environment around the adsorption site. When used within a Multi-Langmuir model, the MP2 results reproduce measured adsorption isotherms (the predicted amount is 6 wt % at 77 K and 40 bar) if we assume that the H(2) molecules preserve their rotational degrees of freedom in the adsorbed state. This allows to discriminate between different isotherms measured for different MOF-5 samples and to reliably predict isotherms for new MOF structures.

摘要

金属有机框架材料(MOFs)是很有前景的储氢吸附剂。采用密度泛函理论和二阶Møller-Plesset微扰理论(MP2)来计算H₂与MOF-5框架的各个结构单元之间的相互作用能。在OZn₄(O₂Ph)₆节点的α位点发现了最强的相互作用,ΔH₇₇ = -7.1 kJ/mol。我们表明必须考虑色散相互作用和零点振动能。将在周期性边界条件下对完整结构进行的计算与从MOF-5框架切出的有限模型进行的计算相比较,结果表明与H₂的相互作用主要源于吸附位点周围的局部环境。当在多朗缪尔模型中使用时,如果我们假设H₂分子在吸附状态下保留其转动自由度,MP2结果就能重现测量的吸附等温线(在77 K和40 bar下预测量为6 wt%)。这使得能够区分针对不同MOF-5样品测量的不同等温线,并可靠地预测新MOF结构的等温线。

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