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有序硅胶材料上微分等排吸附焓和微分熵的色谱测定

Chromatographic determination of the differential isosteric adsorption enthalpies and differential entropies on ordered silica materials.

作者信息

Grajek H, Paciura-Zadrozna J, Witkiewicz Z

机构信息

Institute of Chemistry, Military University of Technology, Warsaw, Poland.

出版信息

J Chromatogr A. 2008 Jun 13;1194(1):118-27. doi: 10.1016/j.chroma.2008.04.015. Epub 2008 Apr 12.

Abstract

The adsorption properties of the ordered mesoporous siliceous materials: MCM-41C16 (denoted as C16), MCM-41C16-SH and MCM-41C16-NH(2) (known as MCMs) having different surface functionalities were studied by inverse gas chromatography to assess their suitability for adsorption of analytes from gas and liquid phases. Polar and non-polar adsorbates were employed. The differential isosteric enthalpies, -DeltaH(ads), and differential entropies, -DeltaS(ads), of adsorption of different 'molecular probes' were determined chromatographically. A mathematical link between the -DeltaH(ads), and -DeltaS(ads) magnitudes and experimental data was derived through an Antoine-type equation. The present studies have been entirely restricted to the region of low adsorbate concentration. The problem of the interrelationship between the -DeltaH(ads), and -DeltaS(ads) values, known as the 'thermodynamic compensation effect', and interpretation of chromatographic data for the adsorption of different adsorbates on the MCMs have been considered in the light of both experimental data obtained in the present studies and the data available in the literature for siliceous adsorbents with randomly ordered structures. It was shown chromatographically that there is substantial parallelism between the magnitudes of the differential isosteric enthalpy and differential entropy for some 'molecular probes' chromatographed on C16 and its derivatives. Complementary information was obtained by atomic-force microscopy (AFM), X-ray photoelectron spectroscopy and X-ray diffraction (XRD) spectroscopy.

摘要

通过反相气相色谱法研究了具有不同表面功能的有序介孔硅质材料

MCM-41C16(记为C16)、MCM-41C16-SH和MCM-41C16-NH₂(称为MCMs)的吸附特性,以评估它们从气相和液相中吸附分析物的适用性。使用了极性和非极性吸附质。通过色谱法测定了不同“分子探针”吸附的微分等量焓(-ΔH(ads))和微分熵(-ΔS(ads))。通过安托万型方程得出了-ΔH(ads)和-ΔS(ads)大小与实验数据之间的数学联系。本研究完全局限于低吸附质浓度区域。根据本研究获得的实验数据以及文献中关于具有随机有序结构的硅质吸附剂的数据,考虑了-ΔH(ads)和-ΔS(ads)值之间的相互关系问题,即“热力学补偿效应”,以及不同吸附质在MCMs上吸附的色谱数据解释。色谱分析表明,在C16及其衍生物上进行色谱分析的一些“分子探针”的微分等量焓和微分熵大小之间存在显著的平行关系。通过原子力显微镜(AFM)、X射线光电子能谱和X射线衍射(XRD)光谱获得了补充信息。

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