首页> 外文期刊>Food analytical methods >Amperometric Determination of Glucose in White Grape and in Tablets as Ingredient by Screen-Printed Electrode Modified with Glucose Oxidase and Composite of Platinum and Multiwalled Carbon Nanotubes
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Amperometric Determination of Glucose in White Grape and in Tablets as Ingredient by Screen-Printed Electrode Modified with Glucose Oxidase and Composite of Platinum and Multiwalled Carbon Nanotubes

机译:用葡萄糖氧化酶改性丝网印刷电极和铂和多壁碳纳米管复合材料,用丝网印刷电极测定白葡萄和片剂中的葡萄糖。

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Multiwalled carbon nanotubes (MWCNTs) and nanocomposite made from MWCNTs and Pt nanoparticles (Pt-MWCNTs) were used as bulk modifiers of screen-printed carbon electrodes (SPCEs). Cyclic voltammetric and amperometric measurements were performed by the homemade substrate electrodes, the bare SPCE and the modified ones (MWCNT-SPCE and Pt-MWCNT-SPCE), with aim to investigate their applicability for determination of H2O2 in phosphate buffer solution (0.1M; pH7.50) as supporting electrolyte. Pt-MWCNT-SPCE showed improved analytical performances including the significant decrease in overpotential of H2O2 compared to SPCE and MWCNT-SPCE. So, Pt-MWCNT-SPCE served as substrate electrode for design of a simple first-generation biosensor made from glucose oxidase (GOx) and Nafion((R)) forming the GOx/Pt-MWCNT-SPCE for reliable determination of glucose via its enzymatic by-product, the H2O2. The surface morphology characterization by scanning electron microscopy confirmed the presence of immobilized spherical shaped biosensing units at the GOx/Pt-MWCNT-SPCE. In the case of amperometry of glucose, optimal potential for the working electrode was -0.50V vs. SCE, and a satisfactory linearity was obtained in the tested concentration range from 65.8 to 260.6gmL(-1), with estimated LOQ of 35.0gmL(-1). The developed cost-effective amperometric method in combination with GOx/Pt-MWCNT-SPCE was successfully applied for the determination of glucose in selected food samples: white grapes and glucose tablets. The obtained results were in good agreement with those received by the alternatively used commercially available glucometer and by the producer declared value in the case of the tablet sample as well.
机译:由MWCNT和PT纳米颗粒(PT-MWCNT)制成的多壁碳纳米管(MWCNT)和纳米复合材料用作丝网印刷碳电极(SPCES)的本体改性剂。通过自制基板电极,裸SPCE和改性物(MWCNT-SPCE和PT-MWCNT-SPCE)进行循环伏安和安培测量,目的是研究其在磷酸盐缓冲溶液中测定H2O2的适用性(0.1M; PH7.50)作为支撑电解质。 PT-MWCNT-SPCE显示出改善的分析性能,包括与SPCE和MWCNT-SPCE相比H2O2的过电位的显着降低。因此,PT-MWCNT-SPCE作为基板电极设计,用于设计由葡萄糖氧化酶(GOX)和Nafion((R))制成的简单的第一代生物传感器,形成GOX / PT-MWCNT-SPCE,以通过其可靠地确定葡萄糖酶副产物,H2O2。扫描电子显微镜的表面形态表征证实了GOX / PT-MWCNT-SPCE处的固定的球形生物传感单元的存在。在葡萄糖的安培测定的情况下,工作电极的最佳电位为-0.50V与SCE,并且在测试浓度范围内获得令人满意的线性,估计LOQ为35.0gml( -1)。成功地应用于与GOX / PT-MWCNT-SPCE组合的开发的经济效率的富集方法用于测定选定食品样品中的葡萄糖:白葡萄糖和葡萄糖片。所获得的结果与由可商业上使用的市售血糖仪及其在片剂样品的情况下的生产者申报价值吻合的结果良好。

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