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Investigations of the mechanism of retention of electrochemically modulated liquid chromatography.

机译:电化学调制液相色谱保留机理的研究。

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摘要

Electrochemically modulated liquid chromatography is a technique which uses a column that is configured as a three-electrode electrochemical cell. The packing is a conductive material, serving both as a stationary phase and as a working electrode. Chromatographic retention is manipulated through changes in the potential applied to the stationary phase (Eapp) which alters interfacial properties such as surface charge and double layer structure. The stationary phase can thus be viewed as a compositionally tunable packing, with retention properties that can be adjusted to enhance separation efficiency. EMLC separations have been carried out to a wide variety of analyte mixtures, including aromatic sulfonates, monosubstituted benzenes and corticosteroids. EMLC can also be used as a tool for investigating electrosorption processes. The main goal of this dissertation is advance insights into the retention mechanism for EMLC.Previous works with charged analytes demonstrated the impact of ionic solute-stationary phase interactions in EMLC retention. The potential-dependent retention of neutral solutes implies a mechanism beyond electrostatics. Simple, neutral aromatic solutes are employed as test solutes to examine this fundamental issue. Benzene and a series of alkylbenzenes, and di- and tri- methylbenzenes are chosen in particular to probe EMLC-based retention with respect to solute structure and properties. Retention is monitored at porous graphitic carbon (PGC) stationary phase as a function of Eapp. The results are then interpreted based on the changes on the strength of solute-stationary phase interactions, including electron donor-acceptor, solvophobic interactions, and competitive adsorption from supporting electrolyte ions.In addition, various factors that influence EMLC retention of alkylbenzenes and methylbenzenes are investigated. Retention data for chromatographic runs carried out at various mobile phase composition-Eapp and supporting electrolyte-Eapp combinations are analyzed to understand the roles of the mobile phase and supporting electrolyte in EMLC. Temperature-controlled EMLC is used to study the thermodynamic aspect of electrosorption of these solutes on PGC.
机译:电化学调制液相色谱法是一种使用配置为三电极电化学池的色谱柱的技术。填料是导电材料,既用作固定相又用作工作电极。色谱保留时间是通过改变固定相(Eapp)的电位来控制的,这会改变界面特性,例如表面电荷和双层结构。因此,固定相可以看作是一种成分可调的填料,其保留特性可以调节以提高分离效率。 EMLC分离已针对多种分析物混合物进行,包括芳族磺酸盐,单取代苯和皮质类固醇。 EMLC也可用作研究电吸附过程的工具。本文的主要目的是对EMLC的保留机理有更深入的了解。以前对带电分析物的研究证明了离子溶质-固定相相互作用对EMLC保留的影响。依赖电位的中性溶质的保留暗示了静电以外的机理。简单,中性的芳香族溶质用作测试溶质,以检验这一基本问题。特别选择苯和一系列烷基苯以及二甲基和三甲基苯,以探查基于EMLC的溶质结构和性质保留。在多孔石墨碳(PGC)固定相处的保留度是Eapp的函数。然后基于溶质-固定相相互作用强度的变化来解释结果,包括电子给体-受体,疏溶剂相互作用以及支持电解质离子的竞争性吸附。此外,影响烷基苯和甲基苯EMLC保留的各种因素是调查。分析在各种流动相组成-Eapp和辅助电解质-Eapp组合下进行的色谱保留数据,以了解流动相和辅助电解质在EMLC中的作用。温度控制的EMLC用于研究PGC上这些溶质的电吸附的热力学方面。

著录项

  • 作者

    Pimienta, Gloria Fe M.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:46

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