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Photoelectrocatalytic oxidation of o-phenols on copper-plated screen-printed electrodes

机译:镀铜丝网印刷电极上邻苯酚的光电催化氧化

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摘要

A novel and sensitive detection method based on photoelectrocatalytic oxidation of o-diphenols was demonstrated on a copper-plated screen-printed carbon electrode (designated CuSPE) in pH 8 phosphate buffer solution. The o-diphenols can be detected amperometrically through electrochemical oxidation at a low applied potential of -0.1 V versus Ag/AgCl, where the CuSPE is much less subject to interfering reactions. The mechanism that induces good selectivity of the CuSPE is explained in terms of the formation of a cyclic five-member complex intermediate (Cu-II-o-quinolate). A prototype homemade flow through cell design is described for incorporating the photoelectrode and light source. Electrode irradiation results in a large increase in anodic current. The oxidative photocurrents produced by irradiation increase with light intensity presumably because of the formation of semiconductor Cu2O. The principle used in this study has an opportunity to extend into various research applications. [References: 22]
机译:在pH 8磷酸盐缓冲溶液中,在镀铜的丝网印刷碳电极(称为CuSPE)上展示了一种基于邻二酚光电催化氧化的新颖灵敏的检测方法。相对于Ag / AgCl,可在-0.1 V的低施加电势下通过电化学氧化以电化学方式检测邻二酚,而CuSPE受干扰反应的可能性要小得多。通过形成环状五元复合中间体(Cu-II-o-喹啉酸酯)解释了诱导CuSPE良好选择性的机理。描述了用于结合光电极和光源的原型自制流通池设计。电极辐照导致阳极电流大大增加。推测是由于形成了半导体Cu 2 O,所以由照射产生的氧化性光电流随着光强度而增加。本研究中使用的原理有机会扩展到各种研究应用中。 [参考:22]

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