首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Thermodynamics of organic molecule adsorption on sorbents modified with 5-hydroxy-6-methyluracil by inverse gas chromatography
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Thermodynamics of organic molecule adsorption on sorbents modified with 5-hydroxy-6-methyluracil by inverse gas chromatography

机译:反相气相色谱法在5-羟基-6-甲基尿嘧啶改性的吸附剂上吸附有机分子的热力学

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摘要

The thermodynamic features of organic molecule adsorption from the gaseous phase of sorbents modified with 5-hydroxy-6-methyluracil (HMU) were studied. Molar internal energy and entropy of adsorption variation analyses showed that with every type surface, except for silica gel, layers of supramolecular structure have cavities equal in size with the ones revealed in HMU crystals by X-ray diffraction. Adsorption thermodynamics on HMU-modified sorbents depended on the amount of impregnated HMU and on the polarity, but not the porosity, of the initial sorbent. Polarity of the modified surface increased as a function of HMU quantity and initial sorbent mean pore size, but become appreciably lower if the initial surface is capable of hydrogen bonding.
机译:研究了用5-羟基-6-甲基尿嘧啶(HMU)改性的吸附剂从气相中吸附有机分子的热力学特征。摩尔内部能和吸附变化熵分析表明,除硅胶外,每种类型的表面的超分子结构层的空穴大小均与X射线衍射显示的HMU晶体大小相同。 HMU改性吸附剂的吸附热力学取决于所浸渍的HMU的量以及初始吸附剂的极性而不是孔隙率。改性表面的极性随HMU数量和初始吸附剂平均孔径的变化而增加,但如果初始表面能够氢键结合,则极性会明显降低。

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