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通过反相气相色谱法吸附在硅胶上的聚甲基丙烯酸甲酯的极性和路易斯酸碱性质的温度依赖性

Temperature Dependence of the Polar and Lewis Acid-Base Properties of Poly Methyl Methacrylate Adsorbed on Silica via Inverse Gas Chromatography.

作者信息

Hamieh Tayssir

机构信息

Faculty of Science and Engineering, Maastricht University, P.O. Box 616, 6200 MD Maastricht, The Netherlands.

Laboratory of Materials, Catalysis, Environment and Analytical Methods (MCEMA), Faculty of Sciences, Lebanese University, Beirut P.O. Box 6573/14, Lebanon.

出版信息

Molecules. 2024 Apr 9;29(8):1688. doi: 10.3390/molecules29081688.

Abstract

The adsorption of polymers on solid surfaces is common in many industrial applications, such as coatings, paints, catalysis, colloids, and adhesion processes. The properties of absorbed polymers commonly vary with temperature. In this paper, inverse gas chromatography at infinite dilution was used to determine the physicochemical characterization of PMMA adsorbed on silica. A new method based on the London dispersion equation was applied with a new parameter associating the deformation polarizability with the harmonic mean of the ionization energies of the solvent. More accurate values of the dispersive and polar interaction energies of the various organic solvents adsorbed on PMMA in bulk phase and PMMA/silica at different recovery fractions were obtained, as well as the Lewis acid-base parameters and the transition temperatures of the different composites. It was found that the temperature and the recovery fraction have important effects on the various physicochemical and thermodynamic properties. The variations in all the interaction parameters showed the presence of three transition temperatures for the different PMMA composites adsorbed on silica with various coverage rates, with a shift in these temperatures for a recovery fraction of 31%. An important variation in the polar enthalpy and entropy of adsorption, the Lewis acid-base parameters and the intermolecular separation distance was highlighted as a function of the temperature and the recovery fraction of PMMA on silica.

摘要

聚合物在固体表面的吸附在许多工业应用中很常见,如涂料、油漆、催化、胶体和粘附过程。被吸附聚合物的性质通常随温度变化。本文采用无限稀释反相气相色谱法测定吸附在二氧化硅上的聚甲基丙烯酸甲酯(PMMA)的物理化学特性。应用了一种基于伦敦色散方程的新方法,该方法有一个新参数将变形极化率与溶剂电离能的调和平均值联系起来。获得了在不同回收分数下,本体相中吸附在PMMA上以及PMMA/二氧化硅体系中各种有机溶剂的色散和极性相互作用能的更精确值,以及不同复合材料的路易斯酸碱参数和转变温度。研究发现,温度和回收分数对各种物理化学和热力学性质有重要影响。所有相互作用参数的变化表明,对于不同覆盖率吸附在二氧化硅上的不同PMMA复合材料,存在三个转变温度,当回收分数为31%时,这些温度会发生偏移。吸附的极性焓和熵、路易斯酸碱参数以及分子间分离距离随温度和PMMA在二氧化硅上的回收分数的变化情况也得到了突出显示。

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