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Paired photoelectrocatalytic reactions of glucose driven by a photoelectrochemical fuel cell with assistance of methylene blue

机译:由亚甲基蓝辅助的光电化学燃料电池驱动的葡萄糖的成对光电催化反应

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This paper reports the paired photoelectrocatalytic reactions of glucose (GLU) by capturing the photogenerated electrons and holes from ultraviolet (UV)-excited TiO2 nanoparticles (NPs) with the assistance of methylene blue (MB) in neutral media. The blue MB in a mixed system containing TiO2 NPs and GLU can rapidly capture the photogenerated electrons upon UV irradiation to form colorless leuco methylene blue (LMB), which is recovered in the dark, representing reversible colorimetric reactions controlled by turning on and off UV light. More interestingly, while employing TiO2/ITO photoanode and ITO cathode to assemble a UV-excited photoelectrochemical fuel cell, GLU existing in anode and cathode compartments can act as reducing and oxidizing agents to involve the paired photoelectrocatalytic reactions promoted by the MB/LMB-based reversible redox system. The cell current shows a linear response to GLU between 0.5 and 2.0 mol L (1). Meanwhile, while adding 2.0 mol L (1) GLU and 2.0 mol L (1) GLU/10.0 mmol L (1) MB to the anode and cathode compartments, respectively, the assembled photoelectrochemical fuel cell shows open-circuit photovoltage of 0.828 V, short-circuit photocurrent density of 29.2 mu A cm (2), maximum power density of 7.2 mu W cm (2) at 0.345 V under UV irradiation of 55 mu W cm (2). (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过在中性介质中借助亚甲基蓝(MB)捕获来自紫外线(UV)激发的TiO2纳米颗粒(NPs)的光生电子和空穴来报告葡萄糖(GLU)的配对光电催化反应。包含TiO2 NP和GLU的混合系统中的蓝色MB可以在紫外线照射下迅速捕获光生电子,形成无色无色亚甲蓝(LMB),该溶液在黑暗中被回收,代表可逆的比色反应,可通过打开和关闭UV光来控制。更有趣的是,当使用TiO2 / ITO光电阳极和ITO阴极组装紫外线激发的光电化学燃料电池时,存在于阳极室和阴极室中的GLU可以充当还原剂和氧化剂,以参与基于MB / LMB的促进的成对光电催化反应可逆氧化还原系统。电池电流显示出对GLU的线性响应,介于0.5和2.0 mol L之间(1)。同时,向阳极室和阴极室分别添加2.0 mol L(1)GLU和2.0 mol L(1)GLU / 10.0 mmol L(1)MB时,组装好的光电化学燃料电池的开路光电压为0.828 V,短路光电流密度为29.2μA·cm(2),最大功率密度为0.25μW·cm(2),在0.345 V的紫外线照射下(55)W·cm(2)。 (C)2016 Elsevier Ltd.保留所有权利。

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