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首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Capillary batch injection analysis and capillary flow injection analysis with electrochemical detection: a comparative study of both methods
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Capillary batch injection analysis and capillary flow injection analysis with electrochemical detection: a comparative study of both methods

机译:毛细管批量进样分析和毛细管流进样分析以及电化学检测:两种方法的比较研究

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摘要

Capillary batch injection analysis (CBIA) and capillary flow injection analysis (CFIA) in combination with electrochemical detection as well as optical detection methods were studied and compared with respect to their performance. Despite the differences in technical equipment both techniques share the same idea of reproducible transport and washout of nanolitre samples over sensing surfaces. Thus the same electrochemical flow cell can be used for both CBIA and CFIA. The amperometric and potentiometric CBIA responses were studied under various experimental conditions in order to optimise the CBIA set-up. In particular, the density of the sample solution relative to that of the cell electrolyte had a remarkable effect on the hydrodynamic characteristics of CBIA. Dispersion in CFIA was investigated using on column UV-detection for electroosmotic flow (EOF) conditions as well as for gravity flow conditions. It is demonstrated for a 75 mu m capillary that the relative band broadening of the sample plug under gravity flow is only about twice as large as under EOF. Furthermore, dispersion in a system that involves a chemical reaction between the sample and the carrier solution, namely CrO72- and Fe2+ has been investigated by amperometric detection and exploited for the determination of dichromate microsamples. [References: 27]
机译:研究了毛细管批量进样分析(CBIA)和毛细管流进样分析(CFIA)结合电化学检测以及光学检测方法,并对其性能进行了比较。尽管技术设备有所不同,但这两种技术都具有相同的想法,即在传感表面上可重复运输和冲洗纳米升样品。因此,相同的电化学流动池可用于CBIA和CFIA。为了优化CBIA设置,在各种实验条件下研究了安培和电位CBIA响应。尤其是,样品溶液的密度相对于电池电解质的密度对CBIA的流体力学特性有显着影响。使用柱上紫外检测技术研究电渗流(EOF)条件和重力流条件下CFIA中的分散度。对于75微米的毛细管,证明了在重力流下样品塞的相对谱带展宽仅是EOF下的两倍。此外,已经通过安培检测研究了涉及样品与载体溶液(即CrO72-和Fe2 +)之间化学反应的系统中的分散体,并将其用于重铬酸盐微量样品的测定。 [参考:27]

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