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一种用于在流动溶液中的金微电极上纳克级测定谷硫磷的亚秒级快速傅里叶变换吸附伏安技术。

A sub-second fast Fourier transform-adsorptive voltammetric technique for the nano-level determination of guthion at a gold microelectrode in flowing solutions.

作者信息

Nabi Bidhendi Gholamreza, Norouzi Parviz, Daneshgar Parandis, Ganjali Mohammad Reza

机构信息

Graduate Faculty of Environment, University of Tehran, Tehran, Iran.

出版信息

J Hazard Mater. 2007 May 8;143(1-2):264-70. doi: 10.1016/j.jhazmat.2006.09.022. Epub 2006 Sep 10.

Abstract

This research demonstrates the quick guthion monitoring with the help of a sensitive method called fast Fourier transformation continuous cyclic voltammetry (FFTCV). Fortunately, FFTCV illustrates the benefits of precision, determination speed, cost-effectiveness, accuracy and simplicity, in comparison with formerly reported techniques. In particular, this method was applied to a gold microelectrode in flowing solutions to detect the guthion concentration in its formulations. The effects of several parameters were examined regarding the sensitivity of the method. After a series of experiments, the detection limit of the method was found to be equal to 1.27 pg/mL, when the optimum conditions were imposed, which is a scan rate value of 40V/s, an accumulation time of 0.4s, an accumulation potential of 0mV and a pH value of 2. During the measurements performance, the integration range of currents included all the potential scan ranges, even the oxidation and reduction of the Au surface electrode, for the achievement of a sensitive determination. Then, the potential waveform, consisting of the potential steps for cleaning, accumulation and the step for the potential ramp, was applied to an Au disk microelectrode in a continuous way. It is also important to refer to the positive points, presented only by the use of this technique. Firstly, it is no longer necessary to remove the oxygen from the test solution. Furthermore, the quick determination of any such compound in many chromatographic methods is possible. Thirdly, the corresponding detection limit is of nanomolar level.

摘要

本研究展示了借助一种名为快速傅里叶变换连续循环伏安法(FFTCV)的灵敏方法对谷硫磷进行快速监测。幸运的是,与先前报道的技术相比,FFTCV展现出了精准度高、测定速度快、成本效益高、准确性高和操作简单等优点。具体而言,该方法应用于流动溶液中的金微电极,以检测其制剂中的谷硫磷浓度。研究了几个参数对该方法灵敏度的影响。经过一系列实验发现,在施加最佳条件时,即扫描速率值为40V/s、累积时间为0.4s、累积电位为0mV且pH值为2的情况下,该方法的检测限等于1.27 pg/mL。在测量过程中,电流的积分范围涵盖了所有的电位扫描范围,甚至包括金表面电极的氧化和还原过程,以实现灵敏测定。然后,将由清洗、累积的电位阶跃以及电位斜坡阶跃组成的电位波形连续应用于金盘微电极。提及仅通过使用该技术呈现出的优点也很重要。首先,不再需要从测试溶液中去除氧气。此外,在许多色谱方法中能够快速测定任何此类化合物。第三,相应的检测限处于纳摩尔水平。

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