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Enhancing the Bipolar Redox Cycling Efficiency of Plane-Recessed Microelectrode Arrays by Adding a Chemically Irreversible Interferent

机译:通过添加化学不可逆的干扰物来提高平面嵌入式微电极阵列的双极氧化还原循环效率。

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The individual electrochemical anodic responses of dopamine (DA), epinephrine (EP), and pyrocatechol (CT) were investigated at arrays of recessed gold disk-microelectrodes arrays (MEAs) covered by a gold plane electrode and compared to those of their binary mixture (CT and EP) when the top-plane electrode was operated as a bipolar electrode or as a collector. The interferent species (EP) displays a chemically irreversible wave over the same potential range as the chemically reversible ones of DA or CT. As expected, in the generator-collector (GC) mode, EP did not contribute to the redox cycling amplification that occurred only for DA or CT. Conversely, in the bipolar mode, the presence of EP drastically increased the bipolar redox cycling efficiency of DA and CT. This evidenced that the chemically irreversible oxidation of EP at the anodic poles of the top plane floating electrode provided additional electron fluxes that were used to more efficiently reduce the oxidized DA or CT species at the cathodic poles. This suggests an easy experimental strategy for enhancing the bipolar efficiency of MEAs up to reach a performance identical to that achieved when the same MEAs are operated in a GC mode.
机译:在由金平面电极覆盖的凹金圆盘微电极阵列(MEA)的阵列上研究了多巴胺(DA),肾上腺素(EP)和邻苯二酚(CT)的单个电化学阳极响应,并将其与二元混合物的电化学阳极响应进行了比较( CT和EP)时,顶电极用作双极电极或集电极。干扰物质(EP)在与DA或CT的化学可逆物相同的电位范围内显示化学不可逆波。不出所料,在生成器-收集器(GC)模式下,EP对仅在DA或CT上发生的氧化还原循环放大没有贡献。相反,在双极模式下,EP的存在极大地提高了DA和CT的双极氧化还原循环效率。这证明了在顶面浮动电极的阳极极上EP的化学不可逆氧化提供了额外的电子通量,该电子通量用于更有效地还原阴极极上的氧化DA或CT物种。这暗示了一种简单的实验策略,可以提高MEA的双极效率,使其达到与在GC模式下运行相同MEA时所达到的性能相同的性能。

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