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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Pore Structure and Fluid Sorption in Ordered Mesoporous Silica. I. Experimental Study by in situ Small-Angle X-ray Scattering
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Pore Structure and Fluid Sorption in Ordered Mesoporous Silica. I. Experimental Study by in situ Small-Angle X-ray Scattering

机译:有序介孔二氧化硅的孔结构和流体吸附。一,原位小角X射线散射实验研究

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Ordered and disordered pores in SBA-15 silica and the gradual rilling of these pores by an adsorbed fluid (dibromomethane, CH2Br2) are investigated by in situ small-angle X-ray scattering. Adsorption into the microporous corona and film formation at the corrugated surface of the ordered cylindrical pores is described by two different geometrical models. The analytical form factor resulting from these models is used to fit the integrated intensities of up to 10 Bragg diffraction peaks from the mesopore lattice. Model fits for the evacuated sample yield the porosity caused by the ordered pores. From these results and the total porosity obtained by nitrogen sorption, we determine the contribution of the disordered porosity, which is nearly 20% for the present sample. The model fits also provide new insight into the adsorbate structure in the ordered pores at different stages of pore filling, while the analysis of diffuse scattering provides information about fluid adsorption in the disordered pores in the walls. It is shown that the filling of the wall porosity affects the evaluation of the adsorbed amount in the ordered pores and leads to a distinction between relative and absolute adsorbed amounts. Using absolute adsorbed amounts, the filling isotherm of the ordered pores and the overall pore filling isotherm can be derived and compared with direct adsorption measurements. On the basis of the results of the present study, a quantitative modeling of the pore morphology and fluid sorption in the ordered and disordered pore regions of SBA-15 is presented in a subsequent paper (part II, DOI 10.1021/jp810040k).
机译:通过原位小角X射线散射研究了SBA-15二氧化硅中有序且无序的孔,以及被吸附流体(二溴甲烷,CH2Br2)逐渐打孔的情况。用两种不同的几何模型描述了微孔电晕的吸附和有序圆柱孔的波纹表面上的膜形成。由这些模型得出的分析形状因数可用于拟合中孔晶格中最多10个布拉格衍射峰的积分强度。模型适用于抽空的样品,其产生的孔隙度是由有序孔引起的。从这些结果以及通过氮吸附获得的总孔隙度,我们确定了无序孔隙度的贡献,该孔隙度对当前样品而言接近20%。该模型拟合还为孔隙填充不同阶段的有序孔中的吸附物结构提供了新的见解,而扩散散射的分析提供了有关壁中无序孔中流体吸附的信息。结果表明,壁孔的填充会影响有序孔中吸附量的评估,并导致相对吸附量和绝对吸附量之间的区别。使用绝对吸附量,可以得出有序孔的填充等温线和总的孔填充等温线,并将其与直接吸附测量值进行比较。根据本研究的结果,在随后的论文中(第II部分,DOI 10.1021 / jp810040k)提出了SBA-15有序和无序孔区域中的孔形态和流体吸附的定量模型。

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