首页> 外文会议>International Symposium on Nanoporous Materials; 20050607-10; Niagara Falls(CA) >Pore size characterization of mesoporous materials by a thermodynamic approach: A curvature-dependent solid-fluid potential
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Pore size characterization of mesoporous materials by a thermodynamic approach: A curvature-dependent solid-fluid potential

机译:用热力学方法表征介孔材料的孔径:曲率相关的固体流体势

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A thermodynamic analysis of nitrogen adsorption in cylindrical pores of MCM-41 and SBA-15 samples at 77 K is presented within the framework of the Broekhoff and de Boer (BdB) theory. We accounted for the effect of the solid surface curvature on the potential exerted by the pore walls. The developed model is in quantitative agreement with the non-local density functional theory (NLDFT) for pores larger than 2 nm. This modified BdB theory accounting for the Curvature Dependent Potential (CDP-BdB) was applied to determine the pore size distribution (PSD) of a number of MCM-41 and SB A-15 samples on the basis of matching the equilibrium theoretical isotherm against the adsorption branch of the experimental isotherm. In all cases investigated the PSDs determined with the new approach are very similar to those determined with the non-local density functional theory also using the same basis of matching of theoretical isotherm against the experimental adsorption branch. The developed continuum theory is very simple in its utilization, suggesting that CDP-BdB could be used as an alternative tool to obtain PSD for mesoporous solids from the analysis of adsorption branch of adsorption isotherms of any sub-critical fluids.
机译:在Broekhoff and de Boer(BdB)理论的框架内,对MCM-41和SBA-15样品的圆柱孔中氮的氮吸附进行了热力学分析(77 K)。我们考虑了固体表面曲率对孔壁施加的电势的影响。对于大于2 nm的孔,开发的模型与非局部密度泛函理论(NLDFT)定量一致。该修正的BdB理论解决了曲率相关电位(CDP-BdB)的问题,它是根据平衡理论等温线与MCM-41和SB A-15样品的匹配来确定许多MCM-41和SB A-15样品的孔径分布(PSD)。实验等温线的吸附分支。在所有调查的案例中,使用新方法确定的PSD与使用非局部密度泛函理论确定的PSD非常相似,并且使用理论等温线与实验吸附分支匹配的相同基础。发达的连续谱理论在使用中非常简单,表明CDP-BdB可以用作通过分析任何亚临界流体的吸附等温线的吸附支路来获得中孔固体PSD的替代工具。

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