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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >SOLVATION IN WEAK COMPLEXING N-OCTYL PHTHALATE AND N-OCTYL TETRACHLOROPHTHALATE SOLVENTS BY GAS CHROMATOGRAPHY
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SOLVATION IN WEAK COMPLEXING N-OCTYL PHTHALATE AND N-OCTYL TETRACHLOROPHTHALATE SOLVENTS BY GAS CHROMATOGRAPHY

机译:气相色谱法在弱配位的N-邻苯二甲酸邻苯二甲酸酯和N-邻苯二甲酸四邻苯二甲酸酯溶剂中的溶解

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摘要

The solution properties of a varied group of solutes in di-n-octyl phthalate and di-n-octyl tetrachlorophthalate over the temperature range 60 to 120 degrees C were studied by gas chromatography. The solvation parameter model was used to assign the contribution of individual intermolecular interactions to the gas-liquid partition coefficients. The dominant interaction was dispersion with only small contributions from dipole-type interactions, n- and pi-electron donor/acceptor interactions (for the tetrachlorophthalate ester only), and solvent hydrogen-bond base interactions. Neither phthalate eater exhibited solvent hydrogen-bond acid properties. Complexes formed between solutes and these phthalate eater solvents are likely to be of the Van der Waals type, perhaps augmented by dipole-type interactions and hydrogen-bond complexation with hydrogen-bond acid solutes. In addition, n- and pi-electron complexation interactions, in the temperature range studied, may contribute to complex formation with the tetrachlorophthalate eater, but are too weak to be the dominant interactions involved. In general, the range of chromatographic selectivity obtainable through exploitation of the phthalate and tetrachlorophthalate nucleus does not warrant their selection as building blocks for new polymer-supported phases with the expectation of providing opportunities to extend the selectivity range of existing gas chromatographic stationary phases. In addition, the influence of interfacial adsorption as a retention mechanism for the determination of solvent properties and as a potential source of disagreement between reported solvent properties for the phthalate esters is discussed.
机译:通过气相色谱法研究了在60至120摄氏度的温度范围内,一组不同的溶质在邻苯二甲酸二正辛酯和四氯邻苯二甲酸正辛酯中的溶液性质。溶剂化参数模型用于分配各个分子间相互作用对气液分配系数的贡献。主要的相互作用是分散,偶极型相互作用,正电子和π电子供体/受体相互作用(仅对于四氯邻苯二甲酸酯)和溶剂氢键碱相互作用贡献很小。两种邻苯二甲酸酯食用剂均未表现出溶剂氢键酸性质。溶质与这些邻苯二甲酸盐食用溶剂之间形成的络合物可能是范德华斯类型的,可能是偶极型相互作用以及氢键与酸键溶质的氢键络合而增强的。此外,在所研究的温度范围内,正电子和正电子的络合相互作用可能有助于与四氯邻苯二甲酸酯的络合物形成,但太弱而不能成为主要的相互作用。通常,通过利用邻苯二甲酸酯和四氯邻苯二甲酸酯核获得的色谱选择性范围并不能保证它们被选作新的聚合物支撑相的组成部分,并期望为扩展现有气相色谱固定相的选择性范围提供机会。此外,还讨论了界面吸附作为确定溶剂性能的保留机理和作为邻苯二甲酸酯的报告溶剂性能之间潜在分歧的潜在来源的影响。

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