首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Improvement of the Derjaguin-Broekhoff-de Boer theory for capillary condensation/evaporation of nitrogen in mesoporous systems and its implications for pore size analysis of MCM-41 silicas and related materials
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Improvement of the Derjaguin-Broekhoff-de Boer theory for capillary condensation/evaporation of nitrogen in mesoporous systems and its implications for pore size analysis of MCM-41 silicas and related materials

机译:Derjaguin-Broekhoff-de Boer理论的改进,用于介孔系统中氮的毛细管冷凝/蒸发,及其对MCM-41二氧化硅和相关材料的孔径分析的意义

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In this work, we propose an improvement of the classical Derjaguin-Broekhoff-de Boer (DBdB) theory for capillary condensation/evaporation in mesoporous systems. The primary idea of this improvement is to employ the Gibbs-Tolman-Koenig-Buff equation to predict the surface tension changes in mesopores. In addition, the statistical film thickness (so-called t-curve) evaluated accurately on the basis of the adsorption isotherms measured for the MCM-41 materials is used instead of the originally proposed t-curve (to take into account the excess of the chemical potential due to the surface forces). It is shown that the aforementioned modifications of the original DBdB theory have significant implications for the pore size analysis of mesoporous solids. To verify our improvement of the DBdB pore size analysis method (IDBdB), a series of the calcined MCM-41 samples, which are well-defined materials with hexagonally ordered cylindrical mesopores, were used for the evaluation of the pore size distributions. The correlation of the IDBdB method with the empirically calibrated Kruk-Jaroniec-Sayari (KJS) relationship is very good in the range of small mesopores. So, a major advantage of the IDBdB method is its applicability for small mesopores as well as for the mesopore range beyond that established by the KJS calibration, i.e., for mesopore radii greater than similar to4.5 nm. The comparison of the IDBdB results with experimental data reported by Kruk and Jaroniec for capillary condensation/evaporation as well as with the results from nonlocal density functional theory developed by Neimark et al. clearly justifies our approach. Note that the proposed improvement of the classical DBdB method preserves its original simplicity and simultaneously ensures a significant improvement of the pore size analysis, which is confirmed by the independent estimation of the mean pore size by the powder X-ray diffraction method.
机译:在这项工作中,我们提出了对中孔系统中毛细管冷凝/蒸发的经典Derjaguin-Broekhoff-de Boer(DBdB)理论的改进。进行此改进的主要思想是使用Gibbs-Tolman-Koenig-Buff方程预测中孔的表面张力变化。此外,使用基于对MCM-41材料测得的吸附等温线准确评估的统计薄膜厚度(所谓的t曲线),而不是最初提出的t曲线(要考虑到多余的t曲线)表面力引起的化学势)。结果表明,对原始DBdB理论的上述修改对介孔固体的孔径分析具有重要意义。为了验证我们对DBdB孔径分析方法(IDBdB)的改进,将一系列煅烧的MCM-41样品定义为具有六边形有序圆柱形中孔的明确材料,用于评估孔径分布。在小介孔范围内,IDBdB方法与经验校准的Kruk-Jaroniec-Sayari(KJS)关系具有很好的相关性。因此,IDBdB方法的主要优点是它适用于小的中孔以及超过KJS校准所确定范围的中孔范围,即适用于大于4.5 nm的中孔半径。 IDBdB结果与Kruk和Jaroniec报告的毛细管冷凝/蒸发实验数据以及Neimark等人开发的非局部密度泛函理论的结果进行了比较。显然证明我们的方法是正确的。请注意,对经典DBdB方法的建议改进保留了其原始的简单性,同时确保了孔径分析的显着改善,这可以通过粉末X射线衍射法对平均孔径的独立估计来确认。

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