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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A sub-nanomole level electrochemical method for determination of prochloraz and its metabolites based on medical stone doped disposable electrode
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A sub-nanomole level electrochemical method for determination of prochloraz and its metabolites based on medical stone doped disposable electrode

机译:医用石头掺杂一次性电极的亚纳级电化学法测定前氯噻嗪及其代谢物

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摘要

A ultrasensitive, simple and convenient electrochemical method was firstly developed for the determination of prochloraz and its metabolites as 2,4,6-trichlorophenol (2,4,6-TCP) using nano-aperture medical stone. Compared with the undoped disposable electrode (UDE), nano-aperture medical stone doped disposable electrode (MSDDE) not only significantly enhances the oxidation peak current of 2,4,6-TCP but also lowers the oxidation overpotential, suggesting that the nano-aperture MSDDE can remarkably improve the sensitivity of 2,4,6-TCP. The experimental conditions such as pH values of buffer solution, the content of nano-aperture medical stone, accumulation potential and time were optimized for the determination of 2,4,6-TCP. At optimal conditions, the oxidation peak current is proportional to the concentration of 2,4,6-TCP over the range from 6.0 × 10~(-9) to 8.0 × 10~(-5) mol L~(-1). Finally, this novel method was successfully employed to detect prochloraz and its metabolites in orange rind with the detection limit of 8.4 × 10~(-10) mol L~(-1) (0.3 ng g~(-1)) and the method was validated by gas chromatography.
机译:首次开发了一种超灵敏,简便易行的电化学方法,用于使用纳米孔径的医用结石测定原麦草酮及其代谢产物2,4,6-三氯苯酚(2,4,6-TCP)。与未掺杂的一次性电极(UDE)相比,纳米孔径的医用石头掺杂的一次性电极(MSDDE)不仅显着增强了2,4,6-TCP的氧化峰值电流,而且降低了氧化超电势,这表明纳米孔径MSDDE可以显着提高2,4,6-TCP的灵敏度。优化了缓冲液的pH值,纳米孔径医用结石的含量,积累潜力和时间等实验条件,用于测定2,4,6-TCP。在最佳条件下,氧化峰电流在6.0×10〜(-9)到8.0×10〜(-5)mol L〜(-1)的范围内与2,4,6-TCP的浓度成正比。最终,该新方法成功地用于橙皮中的丙草胺及其代谢物的检测,检出限为8.4×10〜(-10)mol L〜(-1)(0.3 ng g〜(-1)),该方法通过气相色谱法验证。

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