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Redox Cycling Realized in Paper-Based Biochemical Sensor for Selective Detection of Reversible Redox Molecules Without Micro/Nano Fabrication Process

机译:基于纸的生化传感器中的氧化还原循环可选择性检测可逆的氧化还原分子而无需进行微纳米加工

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摘要

This paper describes a paper-based biochemical sensor that realizes redox cycling with close interelectrode distance. Two electrodes, the generator and collector electrodes, can detect steady-state oxidation and reduction currents when suitable potential is held at each electrode. The sensor has two gold plates on both sides of a piece of chromatography paper and defines the interelectrode distance by the thickness of the paper (180 μm) without any micro-fabrication processes. Our proposed sensor geometry has successfully exhibited signatures of redox cycling. As a result, the concentration of ferrocyanide as reversible redox molecules was successfully quantified under the interference by ascorbic acid as a strong irreversible reducing agent. This was possible because the ascorbic acids are completely consumed by the irreversible reaction, while maintaining redox cycling of reversible ferrocyanide. This suggests that a sensor based on the redox cycling method will be suitable for detecting target molecules at low concentration.
机译:本文介绍了一种基于纸的生化传感器,该电极可实现极近电极间距离的氧化还原循环。当在每个电极上保持适当的电势时,两个电极(发生器电极和集电极)可以检测稳态氧化和还原电流。该传感器在一张色谱纸的两面上都具有两个金板,并且无需任何微细加工即可通过纸的厚度(180μm)定义电极间的距离。我们提出的传感器几何形状已成功展现出氧化还原循环的特征。结果,在抗坏血酸作为强不可逆还原剂的干扰下,成功地定量了作为可逆氧化还原分子的亚铁氰化物的浓度。这是可能的,因为抗坏血酸被不可逆反应完全消耗,同时保持可逆亚铁氰化物的氧化还原循环。这表明基于氧化还原循环方法的传感器将适用于检测低浓度的目标分子。

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