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Anodic stripping voltammetric determination of zinc at a 3-D printed carbon nanofiber-graphite-polystyrene electrode using a carbon pseudo-reference electrode

机译:使用碳假参比电极在3-D打印碳纳米纤维-石墨-聚苯乙烯电极上进行阳极溶出伏安法测定锌

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摘要

The application of a novel fully 3-D printed carbon nanofiber–graphite–polystyrene electrode has been investigated for the trace determination of Zn2+by differential pulse anodic stripping voltammetry. The possibility of utilising a carbon pseudo-reference electrode was found to be successful. The effect of accumulation potential and time were investigated and optimised. Using an accumulation potential of −2.9 V (vs. C) and an accumulation time of 75 s a single sharp anodic stripping peak was recorded exhibiting a linear response from 12.7 μg/L to 450 μg/L. The theoretical detection limit (3σ) was calculated as 8.6 μg/L. Using the optimised conditions a mean recovery of 97.8%, (%CV = 2.0%, n = 5) for a tap water sample fortified at 0.990 μg/mL was obtained indicating the method holds promise for the determination of Zn2+in such samples.
机译:已经研究了一种新颖的全3D打印碳纳米纤维-石墨-聚苯乙烯电极的应用,用于通过差分脉冲阳极溶出伏安法测定痕量Zn2 +。发现使用碳伪参比电极的可能性是成功的。研究和优化了积累潜力和时间的影响。使用-2.9 V(vs. C)的累积电位和75 s的累积时间,记录到一个尖锐的阳极溶出峰,表现出从12.7μg/ L到450μg/ L的线性响应。理论检出限(3σ)计算为8.6μg/ L。使用优化的条件,对于强化为0.990μg/ mL的自来水样品,平均回收率为97.8%,(%CV = 2.0%,n = indicating5),表明该方法有望测定此类样品中的Zn2 +。

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