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Development of a simple, low cost chronoamperometric assay for fructose based on a commercial graphite-nanoparticle modified screen-printed carbon electrode

机译:基于商业石墨-纳米粒子修饰的丝网印刷碳电极的果糖简单,低成本计时电流分析法的开发

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摘要

This paper describes the development of a simple, low cost chronoamperometric assay, for the measurement of fructose, using a graphite-nanoparticle modified screen-printed electrode (SPCE-G-COOH). Cyclic voltammetry showed that the response of the SPCE-G-COOH enhanced the sensitivity and precision, towards the enzymatically generated ferrocyanide species, over a plain SPCE; therefore the former was employed in subsequent studies. \udCalibration studies were carried out using chronoamperometry with a 40 μl mixture containing fructose, mediator and FDH, deposited onto the SPCE-G-COOH. The response was linear from 0.1 mM to 1.0 mM. A commercial fruit juice sample was analysed using the developed assay and the fructose concentration was calculated to be 477 mM with a precision of 3.03 % (n=5). Following fortification (477 mM fructose) the mean recovery was found to be 97.12 % with a coefficient of variation of 6.42 % (n=5); consequently, the method holds promise for the analysis of commercial fruit juices.
机译:本文介绍了一种使用石墨纳米粒子修饰的丝网印刷电极(SPCE-G-COOH)来测量果糖的简单,低成本计时电流分析法的开发。循环伏安法表明,与普通的SPCE相比,SPCE-G-COOH的响应提高了对酶促生成的亚铁氰化物物种的敏感性和精密度;因此,前者被用于随后的研究。 \ ud用计时安培法对40μl包含果糖,介体和FDH的混合物进行了校准研究,该混合物沉积在SPCE-G-COOH上。响应从0.1 mM到1.0 mM是线性的。使用开发的分析方法分析了商用果汁样品,果糖浓度经计算为477 mM,精确度为3.03%(n = 5)。强化(477 mM果糖)后,平均回收率为97.12%,变异系数为6.42%(n = 5)。因此,该方法有望用于分析商业果汁。

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