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Analytical applications of Cu@PtPd/C nanoparticles for the quantification of hydrogen peroxide

机译:Cu @ PTPD / C纳米粒子对过氧化氢量化的分析应用

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摘要

This work reports a non-enzymatic amperometric sensor for hydrogen peroxide based on the use of a glassy carbon composite electrode modified with core-shell Cu@PtPd/C nanoparticles. Cu@PtPd/C presents an important electrocatalytic activity towards hydrogen peroxide reduction. The comparison of the sensitivities and the charge transfer resistances for hydrogen peroxide at the glassy carbon composite electrode modified with 5.0% w/w PVC, Pd/C, Pd/C + Pt/C and Cu@PtPd/C demonstrate a clear synergism on the catalytic reduction of hydrogen peroxide at - 0.100 V when having Pt, Pd and Cu incorporated in the core-shell nanostructure. The best compromise between sensitivity, reproducibility and response time was reached with 20.0% w/w Cu@PtPd/C. For the selected sensor (glassy carbon composite electrode containing 20.0% w/w GCPE/Cu@PtPd/C) the analytical parameters are highly competitive compared to similar devices reported in the last years, with a linear relationship between current and hydrogen peroxide concentration between 5.0 x 10(-6) and 2.5 x 10(-4) M, sensitivity of (5.30 +/- 0.09) x 10(5) mu AM(-1) cm(-2) (r(2) = 0.998) and detection limit of (3.7 +/- 0.5) x 10(-7) M. The resulting sensing platform was successfully used for the quantification of hydrogen peroxide in a mouth-wash sample.
机译:该工作报告了基于用核 - 壳Cu / C纳米颗粒改性的玻璃碳复合电极的过氧化氢的非酶促电压传感器。 Cu @ PTPD / C呈现出致过氧化氢的重要电催化活性。用5.0%w / w pvc,pd / c,pd / c + pt / c和cu @ pd / c改性过氧化氢过氧化氢的敏感性和电荷转移电阻的比较和Cu @ ptpd / c的透明协同作用在核壳纳米结构中掺入Pt,Pd和Cu时,在-0.100V的催化还原过氧化氢的催化还原。敏感性,再现性和响应时间之间的最佳折衷以20.0%w / w cu @ ptpd / c。对于所选传感器(含有20.0%w / w gcpe / Cu / c的玻璃碳复合电极/ c),与过去几年报告的类似装置相比,分析参数具有高竞争力,与在过去几年中报告的类似装置相比,在其之间的电流和过氧化氢浓度之间的线性关系5.0 x 10(-6)和2.5 x 10(-4)m,灵敏度(5.30 +/- 0.09)x 10(5)mu am(-1)cm(-2)(r(2)= 0.998)和检测限(3.7 +/- 0.5)×10(-7)M.得到的传感平台成功地用于口腔清洗样品中过氧化氢的定量。

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