首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >PHOTOELECTROCHEMICAL REDUCTION OF CARBON DIOXIDE IN AQUEOUS SOLUTIONS ON P-GAP ELECTRODES - AN AC IMPEDANCE STUDY WITH PHASE-SENSITIVE DETECTION
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PHOTOELECTROCHEMICAL REDUCTION OF CARBON DIOXIDE IN AQUEOUS SOLUTIONS ON P-GAP ELECTRODES - AN AC IMPEDANCE STUDY WITH PHASE-SENSITIVE DETECTION

机译:P-Gap电极上水溶液中的光化学还原二氧化碳-相敏检测的交流阻抗研究

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The mechanism of the photoelectrochemical reduction of water and CO2 on p-GaP electrodes in aqueous solutions was studied using photocurrent spectroscopy with chopped light excitation, revealing both a photo-anodic sub-bandgap response and a photo-cathodic current due to the bandgap response. A.c. power curves were recorded for p-GaP in pH 7 phosphate buffer electrolyte using modulated irradiation and a lock-in amplifier. At a light modulation frequency of 150 Hz, CO2 bubbling effected a 15% increase in the photo-cathodic current, relative to that in an Ar flushed solution. This effect disappeared at a light modulation frequency of 1560 Hz. Ruthenium pretreatment of p-GaP resulted in a doubling of both the cathodic photocurrent and the photovoltage. Pretreatment of p-GaP by dipping in a solution of CuSO4 caused a marked enhancement in both the dark current and photocurrent at reverse bias. In preparative reduction of aqueous bicarbonate, using light chopped at 22 Hz and -1.08 V between the p-GaP and a stainless steel counter electrode separated by a cation selective membrane, the production of formic acid was determined. The efficiency of conversion of the incident light energy to the Gibbs energy of formation of the formic acid produced amounted to 0.3%, both with bare and with Cu treated p-GaP. [References: 34]
机译:使用斩波光激发的光电流光谱研究了水溶液中p-GaP电极上水和CO2的光电化学还原机理,揭示了带隙响应引起的光阳极亚带隙响应和光阴极电流。交流电使用调制辐射和锁定放大器,记录了pH 7磷酸盐缓冲液中p-GaP的功率曲线。相对于Ar冲洗溶液,在150 Hz的光调制频率下,CO2起泡使光阴极电流增加了15%。在1560 Hz的光调制频率下,此效果消失了。 p-GaP的钌预处理导致阴极光电流和光电压都加倍。通过浸入CuSO4溶液对p-GaP进行预处理,在反向偏置下暗电流和光电流均显着增强。在制备碳酸氢盐水溶液的还原过程中,使用在p-GaP和被阳离子选择性膜分隔的不锈钢对电极之间以22 Hz和-1.08 V斩波的光,确定了甲酸的产生。在裸露的和用Cu处理的p-GaP下,入射光能转化为生成的甲酸的吉布斯能的转化效率为0.3%。 [参考:34]

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