首页> 外文期刊>Analytical chemistry >Fundamentals of capillary electrochromatography: Migration behavior of ionized sample components
【24h】

Fundamentals of capillary electrochromatography: Migration behavior of ionized sample components

机译:毛细管电色谱的基本原理:电离样品组分的迁移行为

获取原文
获取原文并翻译 | 示例
       

摘要

The mechanism of separating charged species by capillary electrochromatography (CEC) was modeled with the conditions of ideal/linear chromatography by using a simple random walk. The most novel aspect of the work rests with the assumption that in sufficiently high electric field ionized sample components can also migrate in the adsorbed state on the ionized surface of the stationary phase. This feature of CEC leads to the introduction of three dimensionless parameters: a, reduced mobility of a sample component with the electrosmotic mobility as the reference; beta, the CEC retention factor; and gamma, the ratio of the electrophoretic migration velocity and the velocity of surface electrodiffusion. Since the interplay of retentive and electrophoretic forces determines the overall migration velocity, the separation mechanism in CEC is governed by the relative importance of the above parameters. The model predicts conditions tinder which the features of the CEC system engender migration behavior that manifests itself in a relatively narrow elution window and in a gradient like elution pattern in the separation of peptides and proteins by using pro forma isocratic CEC. It is believed that such elution patterns, which resemble those obtained by the use of external gradient of the eluent, are brought about by the formation of an internal gradient in the CEC system that gave rise to concomitant peak compression. The peculiarities of CEC are discussed in the three operational modalities of the technique: co-current countercurrent, and co-counter CEC. The results suggest that CEC, which is often called "liquid chromatography on electrophoretic platform" is an analytical tool with great potential in the separation of peptides and proteins. [References: 35]
机译:利用理想/线性色谱条件,通过简单的随机游走,对毛细管电色谱(CEC)分离带电物质的机理进行了建模。该工作的最新颖的方面在于以下假设:在足够高的电场中,电离的样品成分也可以吸附态迁移到固定相的电离表面上。 CEC的这一特性导致引入了三个无量纲参数:a,以电渗迁移率作为参考的样品组分的迁移率降低; beta,CEC保留因子;和γ,电泳迁移速度与表面电扩散速度之比。由于保持力和电泳力的相互作用决定了总体迁移速度,因此CEC中的分离机制受上述参数的相对重要性支配。该模型可预测条件变化,其中CEC系统的特征会导致迁移行为,该行为表现为在使用狭窄的等度CEC分离肽和蛋白质时以相对较窄的洗脱窗口和类似洗脱模式的梯度出现。据信,这种洗脱模式类似于通过使用洗脱液的外部梯度获得的洗脱模式,是通过在CEC系统中形成内部梯度而引起的,该内部梯度引起伴随的峰压缩。在该技术的三种操作模式中讨论了CEC的特殊性:并流逆流和共同计数器CEC。结果表明,CEC通常被称为“电泳平台上的液相色谱”,是一种在分离肽和蛋白质方面具有巨大潜力的分析工具。 [参考:35]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号