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使用铜电极进行毛细管电泳并结合毛细管末端电位检测。

Capillary electrophoresis with end-capillary potentiometric detection using a copper electrode.

作者信息

Macka M, Gerhardt G, Andersson P, Bogan D, Cassidy R M, Haddad P R

机构信息

School of Chemistry, Faculty of Science and Engineering, University of Tasmania, Hobart, Australia.

出版信息

Electrophoresis. 1999 Sep;20(12):2539-46. doi: 10.1002/(SICI)1522-2683(19990801)20:12<2539::AID-ELPS2539>3.0.CO;2-0.

Abstract

Potentiometric end-capillary detection in capillary electrophoresis has the advantage of relatively easy miniaturisation without having to compromise the concentration sensitivity. Potentiometric end-capillary detection using a copper electrode is also attractive because of the sensitive detection of many inorganic and organic UV-transparent ions and the ability to work in both direct and indirect mode. In this work, detection of a number of common anions in a tartrate electrolyte at pH 3 was studied. The influence of the end-capillary detection geometry on the detection performance was investigated. An end-capillary detection cell allowing the separation capillary to be changed without the need to realign the detection electrode was constructed and fitted into a commercial CE apparatus. Under the optimal configuration, which was a 25 microm diameter copper electrode aligned coaxially with a 25 microm capillary and positioned at a distance of about 25 microm from the capillary end, excellent peak shapes were achieved and comparison with simultaneous on-capillary photometric detection showed no additional peak broadening. Good sensitivity was obtained, resulting in concentration limits of detection (LODs) in the low microM range and mass LODs in the low amol range. Examples of separations of inorganic and organic anions are presented and the analytical potential of the detection method is assessed.

摘要

毛细管电泳中的电位端毛细管检测具有相对易于小型化的优点,且无需牺牲浓度灵敏度。使用铜电极的电位端毛细管检测也很有吸引力,因为它能灵敏检测许多无机和有机紫外透明离子,并且能够以直接和间接模式工作。在这项工作中,研究了在pH 3的酒石酸盐电解质中对多种常见阴离子的检测。研究了端毛细管检测几何结构对检测性能的影响。构建了一种端毛细管检测池,无需重新调整检测电极即可更换分离毛细管,并将其安装到商用毛细管电泳仪中。在最佳配置下,即直径为25微米的铜电极与25微米的毛细管同轴对齐,并位于距毛细管末端约25微米处,获得了出色的峰形,与同时进行的毛细管光度检测相比,没有额外的峰展宽。获得了良好的灵敏度,检测限(LOD)在低微摩尔范围内,质量检测限在低阿托摩尔范围内。给出了无机和有机阴离子分离的示例,并评估了该检测方法的分析潜力。

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