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Imparting improvements in electrochemical sensors: evaluation of different carbon blacks that give rise to significant improvement in the performance of electroanalytical sensing platforms

机译:促进电化学传感器的改进:评估各种炭黑,从而显着改善电分析传感平台的性能

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摘要

Three different carbon black materials have been evaluated as a potential modifier, however, only one demonstrated an improvement in the electrochemical properties. The carbon black structures were characterised with SEM, XPS and Raman spectroscopy and found to be very similar to that of amorphous graphitic materials. The modifications utilised were constructed by three different strategies (using ultrapure water, chitosan and dihexadecylphosphate). The fabricated sensors are electrochemically characterised using N,N,N',N'-tetramethyl-para-phenylenediamine and both inner-sphere and outer-sphere redox probes, namely potassium ferrocyanide(II) and hexaammineruthenium(III) chloride, in addition to the biologically relevant and electroactive analytes, dopamine (DA) and acetaminophen (AP). Comparisons are made with an edge-plane pyrolytic graphite and glassy-carbon electrode and the benefits of carbon black implemented as a modifier for sensors within electrochemistry are explored, as well as the characterisation of their electroanalytical performances. We reveal significant improvements in the electrochemical performance (excellent sensitivity, faster heterogeneous electron transfer rate (HET)) over that of a bare glassy-carbon and edge-plane pyrolytic graphite electrode and thus suggest that there are substantial advantages of using carbon black as modifier in the fabrication of electrochemical based sensors. Such work is highly important and informative for those working in the field of electroanalysis where electrochemistry can provide portable, rapid, reliable and accurate sensing protocols (bringing the laboratory into the field), with particular relevance to those searching for new electrode materials.
机译:已经评估了三种不同的炭黑材料作为电势调节剂,但是,只有一种材料表现出电化学性能的改善。通过SEM,XPS和拉曼光谱对炭黑结构进行了表征,发现炭黑结构与无定形石墨材料非常相似。通过三种不同的策略(使用超纯水,壳聚糖和磷酸二十六烷基酯)构建了利用的修饰。使用N,N,N',N'-四甲基对苯二胺和内球和外球氧化还原探针(即亚铁氰化钾(II)和六氨合钌(III))进行电化学表征具有生物活性和电活性的分析物,多巴胺(DA)和对乙酰氨基酚(AP)。与边缘平面热解石墨和玻璃碳电极进行了比较,并探索了炭黑作为电化学传感器修饰剂的优势,以及它们的电分析性能表征。我们发现,与裸玻璃碳和边缘平面热解石墨电极相比,电化学性能有了显着改善(出色的灵敏度,更快的异质电子传递速率(HET)),因此表明使用炭黑作为改性剂具有很大的优势在制造基于电化学的传感器中。对于从事电化学分析领域的人员而言,此类工作非常重要且具有参考价值,在电化学领域,电化学可以提供便携式,快速,可靠和准确的传感方案(将实验室带入该领域),尤其与那些寻求新电极材料的人员有关。

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