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A PC-controlled, ultrafast scanning electrochemical detector for high-performance liquid chromatography.

机译:由PC控制的超快扫描电化学检测器,用于高性能液相色谱。

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摘要

This research focuses on the design, implementation and evaluation of an ultra-fast scanning Electrochemical Detector (ECD) for High Performance Liquid Chromatography, (HPLC). The scanning detector employs a microelectrode array as the working electrode. The electrode array has been designed to fit directly into a commercially available ECD cell.; Microelectrodes allow very rapid changes in potential while maintaining low background currents. Rapidly scanning the potential up to 10 volts per second yields time resolved current-voltage profiles of components as they elute from a chromatographic column. Coeluting peaks in the time domain are then resolved in the potential domain by taking the differential of the electrochemical profile. Several microelectrode arrays for various electrochemical detection techniques were evaluated using gold and carbon electrodes of radius 25{dollar}mu{dollar}m, 6.5{dollar}mu{dollar}m and 3{dollar}mu{dollar}m with solutions of ferrocene and catecholamines.; The detector interface, software and electronics were engineered to interface with an IBM AT or compatible computer with 640 K of memory, a hard disk and a 20 MHz analog-to-digital digital-to-analog board. The rapid potential changes and the resulting cell current were controlled and monitored using fast executing assembler routines. Computer control of the ECD system made the application of a variety of amperometric techniques possible. Extensive data reduction procedures such as signal sorting from three dimensional data (E-i-t), and data averaging and smoothing were also developed.; The research also explored the effect of flow rate and solution resistance on the electrochemical cell current.
机译:这项研究的重点是用于高效液相色谱(HPLC)的超快速扫描电化学检测器(ECD)的设计,实施和评估。扫描检测器采用微电极阵列作为工作电极。电极阵列已设计成可直接装入市售ECD电池中。微电极在保持低背景电流的同时,允许电位快速变化。在色谱柱上洗脱下来的组分时,快速扫描高达每秒10伏的电势会产生时间分辨的组分的电流-电压曲线。然后,通过获取电化学分布图的差异,将时域中的共流出峰解析为电势域。在二茂铁溶液中,使用半径为25 25、6.5和3 3的金和碳电极评估了几种用于各种电化学检测技术的微电极阵列和儿茶酚胺。检测器接口,软件和电子设备经过精心设计,可与具有640 K内存,硬盘和20 MHz模数数模板的IBM AT或兼容计算机对接。使用快速执行的汇编程序,可以控制和监视快速的电位变化以及由此产生的电池电流。 ECD系统的计算机控制使各种安培技术的应用成为可能。还开发了广泛的数据缩减程序,例如从三维数据(E-i-t)进行信号分类,数据平均和平滑处理。该研究还探讨了流速和溶液电阻对电化学电池电流的影响。

著录项

  • 作者

    Rhodes, Derek Frank.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Chemistry Analytical.; Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 430 p.
  • 总页数 430
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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