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基于分子间相互作用化学反应的体积排阻毛细管电色谱的矩分析理论

Moment Analysis Theory for Size Exclusion Capillary Electrochromatography with Chemical Reaction of Intermolecular Interaction.

作者信息

Miyabe Kanji, Suzuki Nozomu

机构信息

Department of Chemistry, Faculty of Science, Rikkyo University.

出版信息

Anal Sci. 2017;33(10):1147-1154. doi: 10.2116/analsci.33.1147.

Abstract

New moment equations were developed for size exclusion capillary electrochromatography (SECEC), in which intermolecular chemical reactions simultaneously took place. They explain how the first absolute and second central moments of elution peaks are correlated with some fundamental equilibrium and kinetic parameters of mass transfer and chemical reaction in SECEC column. In order to demonstrate the effectiveness of the moment equations, they were used to predict chromatographic behavior under hypothetical SECEC conditions. It was quantitatively studied how the association and dissociation rate constants of intermolecular interaction affected the position and spreading of elution peaks. It was indicated that both the intermolecular reaction kinetics and axial dispersion of solute molecules in a capillary column had a predominant contribution to the band broadening.

摘要

针对尺寸排阻毛细管电色谱(SECEC)建立了新的矩方程,其中分子间化学反应同时发生。这些方程解释了洗脱峰的一阶绝对矩和二阶中心矩如何与SECEC柱中传质和化学反应的一些基本平衡及动力学参数相关。为了证明矩方程的有效性,将其用于预测假设的SECEC条件下的色谱行为。定量研究了分子间相互作用的缔合和解离速率常数如何影响洗脱峰的位置和展宽。结果表明,分子间反应动力学和溶质分子在毛细管柱中的轴向扩散对谱带展宽都有主要贡献。

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