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Density functional theory methods for characterization of porous materials

机译:表征多孔材料的密度泛函理论方法

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This review presents the state-of-the-art of adsorption characterization of mesoporous and microporous materials by using the density functional theory (DFT) methods. The DFT methods have found numerous applications for calculating pore size distributions in traditional and newly discovered nanoporous solids. We discuss the foundations of the non-local (NLDFT) and quench solid (QSDFT) density functional theories applied for modeling adsorption and capillary condensation in pores of different geometry and surface chemistry. Special attention is paid to the limitations of the theoretical models and critical analysis of the obtained data. The methods are demonstrated on a wide variety of systems, including microporous and mesoporous carbons and silicas, zeolites, mesoporous crystals of MCM and SBA families, metal-organic frameworks, and other designer nanoporous materials. Illustrated with many typical examples and detailed discussions of the advantages and limitations of the NLDFT and QSDFT methods, this review provides guidance for the practitioners interested in getting a better understanding of the current capabilities and limitations of the adsorption methods for characterization of porous solids.
机译:这篇综述介绍了使用密度泛函理论(DFT)方法对中孔和微孔材料进行吸附表征的最新技术。 DFT方法已经发现了许多用于计算传统和新发现的纳米多孔固体中孔径分布的应用。我们讨论了非局部(NLDFT)和淬火固体(QSDFT)密度泛函理论的基础,这些理论用于模拟不同几何形状和表面化学性质的孔隙中的吸附和毛细管凝聚。要特别注意理论模型的局限性以及对获得的数据进行严格的分析。该方法已在多种系统上得到证明,包括微孔和中孔碳和二氧化硅,沸石,MCM和SBA系列的中孔晶体,金属有机骨架和其他纳米多孔材料。通过许多典型示例和NLDFT和QSDFT方法优点和局限性的详细讨论进行了说明,本综述为有兴趣更好地了解表征多孔固体的吸附方法的当前功能和局限性的从业人员提供了指导。

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