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Study of mixed-mode sorption of a dye on heterogeneous chromatographic interfaces.

机译:研究染料在非均相色谱界面上的混合模式吸附。

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摘要

Single-molecule spectroscopy, fluorescence correlation spectroscopy, atomic force microscopy, and microfluidics were used to probe the heterogeneous adsorption and lateral diffusion of molecules at chromatographic interfaces. This research is the first to report the direct observation of adsorption of molecules to topographical sites existing on chromatographic surfaces. In addition, an analytical expression to the autocorrelation function was derived to accurately model the interaction of molecules with a heterogeneous surface, where both lateral diffusion and rare strong adsorption occur.; Strong adsorption sites having a topographical origin exist on fused silica. Since there is a considerable amount of overlap between the topographical indentations of fused silica and the pore size distribution of silica gel, strong adsorption to silica gel likely has a contribution from topography. Topography had not previously been considered as a factor in the silanol activity of silica. The topographical origin could be the explanation for why endcapped silica retains its high efficiency after a significant amount of stationary phase has been degraded: steric hindrance would be enhanced in nanometer indentations. The topographical origin is consistent with the observation that a homogeneously redeposited silica gel surface has less silanol activity. Efforts to synthesize silica gel having fewer active silanols, or a reproducible number of active silanols, might benefit by addressing the topography of the silica gel surface specifically.; Fluorescence correlation spectroscopy was used to determine that the surface of C18 on silica has at least four types of adsorption sites for C18 DiI in 60% acetonitrile/water. The most prevalent site involves weak adsorption that allows the dye to laterally diffuse. Three specific adsorption sites exist, with desorption times on the order of tens of milliseconds, seconds, and tens of seconds, and these sites have comparable dye concentrations of adsorbed dye. The specific adsorption sites having desorption times longer than one second are clustered at topographical pits on fused silica, where specific adsorption events are observable at a high rate locally. Microfluidics was used to probe the interface of C8 modified chromatographic silica gel particles. This study of chromatographic silica gel particles agreed with the results obtained on fused silica coverslips.
机译:单分子光谱,荧光相关光谱,原子力显微镜和微流控技术被用来探测色谱界面上分子的异质吸附和横向扩散。该研究是第一个报告直接观察分子吸附到色谱表面上存在的地形部位的观察。此外,推导了自相关函数的解析表达式,以精确地模拟分子与异质表面的相互作用,在异质表面上发生横向扩散和罕见的强吸附。具有形貌起源的强吸附位点存在于熔融二氧化硅上。由于熔融二氧化硅的形貌压痕和硅胶的孔径分布之间存在大量重叠,因此对硅胶的强吸附很可能是由形貌引起的。以前,地形不被认为是二氧化硅的硅烷醇活性的因素。地形的起源可能解释了封端的二氧化硅为何在大量固定相降解后仍能保持其高效率:在纳米压痕中位阻会增强。地形起点与观察到的一致,即均匀再沉积的硅胶表面的硅烷醇活性较低。合成具有较少活性硅烷醇或可再生数目的活性硅烷醇的硅胶的努力,可能会通过特别解决硅胶表面的形貌而受益。用荧光相关光谱法确定二氧化硅上C 18 的表面在60%乙腈/水中至少具有四种C 18 DiI的吸附位。最普遍的位点涉及弱吸收,使染料横向扩散。存在三个特定的吸附位点,解吸时间分别为数十毫秒,秒和数十秒,并且这些位点具有可比的吸附染料浓度。解吸时间长于一秒的特定吸附位点聚集在熔融石英上的形貌凹点上,在那里可以以高速率局部观察到特定的吸附事件。用微流控技术对C 8 修饰的色谱硅胶颗粒的界面进行了探测。色谱硅胶颗粒的这项研究与在熔融石英盖玻片上获得的结果一致。

著录项

  • 作者

    Ludes, Melody D.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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