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Applicability of classical methods of pore size analysis for MCM-41 and SBA-15 silicas

机译:经典孔径分析方法在MCM-41和SBA-15硅胶上的适用性

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摘要

Two most popular ordered mesoporous silicas, MCM-41 and SBA-15, exhibiting uniform mesopores of approximately cylindrical shapes, have been used as model adsorbents for verification, improvement and/or development of adsorption-based methods for characterization nanoporous materials. While the applicability of the classical methods for pore size analysis was widely examined by employing MCM-41 materials, the large-pore materials such as SBA-15 did not find adequate usage for this type of studies. The current work addresses the issue of applicability of classical methods such as Barrett-Joyner-Hallenda (BJH) and Broekhoff-de Boer (BdB) methods for pore size analysis of mesoporous silicas by using MCM-41 and SBA-15 materials as model adsorbents. In addition, the Kruk-Jaroniec-Sayari (KJS) method, which is based on the BJH algorithm and experimental relations for the pore width and statistical film thickness, is discussed too. While the MCM-41 materials cover the range of small mesopores (about 2-7 nm), the inclusion of SBA-15 materials allowed us to examine the range of the pore diameters up to about 12 nm. The high quality MCM-41 and SBA-15 samples are used to discuss the applicability and limitations of the aforementioned characterization methods and to propose some recommendations for pore size analysis of these materials.
机译:两种最流行的有序介孔二氧化硅MCM-41和SBA-15,表现出近似圆柱形的均匀中孔,已被用作模型吸附剂,用于验证,改进和/或开发用于表征纳米多孔材料的基于吸附的方法。尽管通过使用MCM-41材料广泛研究了经典方法在孔径分析中的适用性,但大孔材料(例如SBA-15)并未找到适合此类研究的用途。当前的工作解决了使用MCM-41和SBA-15材料作为模型吸附剂的经典方法(如Barrett-Joyner-Hallenda(BJH)和Broekhoff-de Boer(BdB)方法)用于介孔二氧化硅孔径分析的问题。 。此外,还讨论了基于BJH算法的Kruk-Jaroniec-Sayari(KJS)方法以及孔宽度和统计膜厚度的实验关系。尽管MCM-41材料涵盖了小中孔的范围(约2-7 nm),但是SBA-15材料的加入使我们能够检查孔径范围最大约12 nm。高质量的MCM-41和SBA-15样品用于讨论上述表征方法的适用性和局限性,并为这些材料的孔径分析提出一些建议。

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