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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Trace manganese detection via differential pulse cathodic stripping voltammetry using disposable electrodes: additively manufactured nanographite electrochemical sensing platforms
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Trace manganese detection via differential pulse cathodic stripping voltammetry using disposable electrodes: additively manufactured nanographite electrochemical sensing platforms

机译:痕量锰检测通过使用一次性电极通过差分脉冲阴极剥离伏安法测定:较为制造的纳米型电化学传感平台

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摘要

Additive manufacturing is a promising technology for the rapid and economical fabrication of portable electroanalytical devices. In this paper we seek to determine how our bespoke additive manufacturing feedstocks act as the basis of an electrochemical sensing platform towards the sensing of manganese(II) via differential pulse cathodic stripping voltammetry (DPCSV), despite the electrode comprising only 25 wt% nanographite and 75 wt% plastic (polylactic acid). The Additive Manufactured electrodes (AM-electrodes) are also critically compared to graphite screen-printed macroelectrodes (SPEs) and both are explored in model and real tap-water samples. Using optimized DPCSV conditions at pH 6.0, the analytical outputs using the AM-electrodes are as follows: limit of detection, 1.6 × 10-9 mol L~(-1) (0.09 μg L~(-1)); analytical sensitivity, 3.4 μA V μmol-1 L; linear range, 9.1 × 10~(-9) mol L~(-1) to 2.7 × 10~(-6) mol L~(-1) (R~2 = 0.998); and RSD 4.9% (N = 10 for 1 μmol L~(-1)). These results are compared to screen-printed macroelectrodes (SPEs) giving comparable results providing confidence that AM-electrodes can provide the basis for useful electrochemical sensing platforms. The proposed electroanalytical method (both AM-electrodes and SPEs) is shown to be successfully applied for the determination of manganese(II) in tap water samples and in the analysis of a certified material (drinking water). The proposed method is feasible to be applied for in-loco analyses due to the portability of sensing; in addition, the use of AM-printed electrodes is attractive due to their low cost.
机译:添加剂制造是一种有希望的便携式电扫描装置的快速和经济的制造技术。在本文中,我们试图确定我们的定制添加剂制造原料是如何通过差分脉冲阴极剥离伏安法(DPCSV)朝向感测锰(II)的电化学传感平台的基础,尽管电极仅包含25wt%纳米75wt%塑料(聚乳酸)。与石墨丝网印刷的宏观电极(SPE)相比,添加剂制造的电极(AM电极)也统治于模型和真正的自来水样本中。在PH 6.0处使用优化的DPCSV条件,使用AM电极的分析输出如下:检测限,1.6×10-9摩尔L〜(-1)(0.09μgL〜(-1));分析敏感性,3.4μAvμmol-1L;线性范围,9.1×10〜(-9)Mol L〜(-1)至2.7×10〜(-6)Mol L〜(-1)(R〜2 = 0.998); RSD 4.9%(n = 10,1μmoll〜(-1))。将这些结果与丝网印刷的宏观电极(SPE)进行比较,其具有可比的结果,提供了AM电极可以为有用的电化学传感平台提供基础的信心。所提出的电扫描方法(AM电极和SPE)被证明可成功地应用于自来水样品中的锰(II)的测定,并在经过认证的材料(饮用水)中的分析中。所提出的方法是可行的,可以应用于引起的对位于感测的可移植性的分析;此外,由于其低成本,使用am印刷电极具有吸引力。

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