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Chromatographic properties of silica-based monolithic HPLC columns.

机译:二氧化硅基整体HPLC色谱柱的色谱性能。

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摘要

Silica-based monolithic HPLC columns contain a novel chromatographic support in which the traditional particulate packing has been replaced with a single, continuous network (monolith) of porous silica. The main advantage of such a network is decreased backpressure due to macropores (2 μm) throughout the network. This allows high flow rates, and hence fast analyses that are unattainable with traditional particulate columns.; The Chromolith SpeedROD™ (EM Science, Gibbstown NJ) is a commercially available silica-based monolithic column. This work investigated the chromatographic properties of the 50 x 4.60 mm (ODS) SpeedROD™. Data fit to the van Deemter equation (mean square error = 0.834) indicated that the van Deemter model was valid for monolithic columns. An effective particle size of 4 μm for the SpeedROD™ column was assigned by comparing the minimum of van Deemter curves with a series of particulate columns having various particle diameters. Separation Impedance (E), an empirically derived measure of column performance, was calculated as an alternate method of evaluating column efficiency. Data collected using this model confirmed monolithic columns behaves as a (more efficient) 3 μm column.; A series of experiments were designed to compare the effects of mobile phase strength and mobile phase viscosity between the SpeedROD™ column and a particulate column. The results indicated both solvent strength and viscosity have effects on the monolithic column at the optimum linear velocity.; A fast (90 s) HPLC method was developed using the SpeedROD™ column and a seven-component test mixture with a large range of hydrophobicities. The precision for both retention time and peak area was measured at high linear velocities (8 mL/min) and the percent relative standard deviation (RSD) calculated. Column to column reproducibility (n = 6) was measured. The overall percent RSD ranged from 0.25% to 4.56% for retention time and from 1.08% to 6.77% for peak area. Run to run reproducibility (n = 15) was measured for all six columns. Averages ranged for retention time from 0.89% to 5.09% RSD and for peak area from 4.65% to 6.18% RSD.; Applications for the SpeedROD™ column with various sample types were developed and discussed. These methods demonstrated the effectiveness of the SpeedROD™ at fast flow rates.
机译:基于硅胶的整体式HPLC色谱柱包含一种新型色谱载体,其中传统的颗粒填料已被多孔二氧化硅的单个连续网络(整体式)取代。这种网络的主要优点是由于整个网络中的大孔(2μm)而降低了背压。这样可以实现高流速,从而实现传统颗粒色谱柱无法实现的快速分析。 Chromolith SpeedROD™(EM科学,新泽西州吉布斯敦)是一种可商购的基于二氧化硅的整体式色谱柱。这项工作研究了50 x 4.60 mm(ODS)SpeedROD™的色谱特性。符合van Deemter方程的数据(均方误差= 0.834)表明,van Deemter模型对于整体式色谱柱有效。通过将van Deemter曲线的最小值与一系列具有各种粒径的颗粒色谱柱进行比较,得出SpeedROD™色谱柱的有效粒径为4μm。分离阻抗(E)是一种根据经验得出的色谱柱性能指标,它是评估色谱柱效率的另一种方法。使用该模型收集的数据证实,整体柱的行为类似于(更高效的)3μm柱。设计了一系列实验,以比较SpeedROD™色谱柱和颗粒色谱柱之间流动相强度和流动相粘度的影响。结果表明,在最佳线速度下,溶剂强度和粘度都会对整体柱产生影响。使用SpeedROD™色谱柱和具有大范围疏水性的七组分测试混合物开发了一种快速(90 s)HPLC方法。在高线性速度(8 mL / min)下测量保留时间和峰面积的精度,并计算相对标准偏差百分比(RSD)。测量了色谱柱之间的重现性(n = 6)。对于保留时间,总的RSD百分比范围为0.25%至4.56%,对于峰面积,整体RSD范围为1.08%至6.77%。对所有六根色谱柱均进行了一次运行的重现性测试(n = 15)。保留时间的平均值为RSD的0.89%至5.09%,峰面积的RSD平均值为4.65%至6.18%。开发和讨论了具有各种样品类型的SpeedROD™色谱柱的应用。这些方法证明了SpeedROD™在快速流速下的有效性。

著录项

  • 作者

    Smith, Jennifer Houston.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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