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Evaluation of the BET Method for Determining Surface Areas of MOFs and Zeolites that Contain Ultra-Micropores

机译:BET法测定含有超微孔的MOF和沸石表面积的评估

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摘要

The BET analysis is commonly used for determining surface areas of metal-organic frameworks (MOFs) and zeolites that contain “ultra-micropores” (<7A ° ) even though it is often stated that the BET surface areas obtained for such small pores are not really meaningful in an absolute sense. In this study, nitrogen and argon isotherms in MOFs and zeolites (most of them having ultra-micropores) were predicted by grand canonical Monte Carlo (GCMC) simulations and used as pseudoexperimental data to evaluate the BET method for these structures. The BET surface areas calculated from the simulated nitrogen and argon isotherms agree well with the accessible surface areas obtained directly from crystal structures in a geometric fashion. However, this was only true when the BET analysis was performed using the appropriate pressure range based on published “consistency criteria”; the BET analysis underestimates the surface areas of all the selected MOFs and zeolites if it is done in the “standard” BET pressure range. Moreover, the BET theory was shown to work well for a zeolite with a highly heterogeneous surface. These results validate the application of the BET method for determining surface areas of MOFs and zeolites even for materials having ultra-micropores or heterogeneous pores.
机译:BET分析通常用于确定包含“超微孔”(<7A°)的金属有机骨架(MOF)和沸石的表面积,尽管通常指出对于如此小的孔所获得的BET表面积并非如此。从绝对意义上讲,确实非常有意义。在这项研究中,通过大正则蒙特卡罗(GCMC)模拟预测了MOF和沸石(其中大多数具有超微孔)中的氮和氩等温线,并将其用作伪实验数据来评估这些结构的BET方法。由模拟的氮气和氩气等温线计算得到的BET表面积与以几何方式直接从晶体结构获得的可及表面积非常吻合。但是,只有在基于已发布的“一致性标准”使用适当的压力范围进行BET分析时,这才是正确的。如果在“标准” BET压力范围内进行,BET分析会低估所有选定的MOF和沸石的表面积。此外,已证明BET理论对表面高度不均匀的沸石非常有效。这些结果证实了BET方法在确定MOF和沸石的表面积方面的应用,甚至对于具有超微孔或异质孔的材料也是如此。

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