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金属有机框架材料中的选择性气体吸附与分离

Selective gas adsorption and separation in metal-organic frameworks.

作者信息

Li Jian-Rong, Kuppler Ryan J, Zhou Hong-Cai

机构信息

Department of Chemistry, Texas A&M University, College Station, TX 77842-3012, USA.

出版信息

Chem Soc Rev. 2009 May;38(5):1477-504. doi: 10.1039/b802426j. Epub 2009 Mar 26.

Abstract

Adsorptive separation is very important in industry. Generally, the process uses porous solid materials such as zeolites, activated carbons, or silica gels as adsorbents. With an ever increasing need for a more efficient, energy-saving, and environmentally benign procedure for gas separation, adsorbents with tailored structures and tunable surface properties must be found. Metal-organic frameworks (MOFs), constructed by metal-containing nodes connected by organic bridges, are such a new type of porous materials. They are promising candidates as adsorbents for gas separations due to their large surface areas, adjustable pore sizes and controllable properties, as well as acceptable thermal stability. This critical review starts with a brief introduction to gas separation and purification based on selective adsorption, followed by a review of gas selective adsorption in rigid and flexible MOFs. Based on possible mechanisms, selective adsorptions observed in MOFs are classified, and primary relationships between adsorption properties and framework features are analyzed. As a specific example of tailor-made MOFs, mesh-adjustable molecular sieves are emphasized and the underlying working mechanism elucidated. In addition to the experimental aspect, theoretical investigations from adsorption equilibrium to diffusion dynamics via molecular simulations are also briefly reviewed. Furthermore, gas separations in MOFs, including the molecular sieving effect, kinetic separation, the quantum sieving effect for H2/D2 separation, and MOF-based membranes are also summarized (227 references).

摘要

吸附分离在工业中非常重要。一般来说,该过程使用多孔固体材料,如沸石、活性炭或硅胶作为吸附剂。随着对更高效、节能和环境友好的气体分离程序的需求不断增加,必须找到具有定制结构和可调表面性质的吸附剂。金属有机框架(MOF)是由通过有机桥连接的含金属节点构建而成的新型多孔材料。由于其大的表面积、可调的孔径和可控的性质以及可接受的热稳定性,它们是有前途的气体分离吸附剂候选材料。这篇综述首先简要介绍基于选择性吸附的气体分离和净化,接着综述刚性和柔性MOF中的气体选择性吸附。基于可能的机制,对MOF中观察到的选择性吸附进行分类,并分析吸附性质与框架特征之间的主要关系。作为定制MOF的一个具体例子,强调了可调节孔径的分子筛并阐明了其潜在的工作机制。除了实验方面,还简要综述了从吸附平衡到通过分子模拟的扩散动力学的理论研究。此外,还总结了MOF中的气体分离,包括分子筛效应、动力学分离、H2/D2分离的量子筛分效应以及基于MOF的膜(参考文献227篇)。

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