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Photocatalytic reaction on photofuel cell titania electrode

机译:在光燃料电池二氧化钛电极上的光催化反应

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Benzoic acid-doped titania electrodes were prepared from titanium alkoxide sols containing benzoic acid in order to examine the photocatalytic reaction of the fuel material concentrated on the titania surface of a photofuel cell electrode. This doping was developed in order to understand the physicochemical processes on the titania rather than to advance the practical use of the photofuel cells. The observed photocurrent and CO_2 and H_2O productions indicated that the oxidation of the benzoic acid enhanced the generation of electricity during the UV irradiation. Benzoic acid molecules should be oxidized by oxygen molecules and holes on the titania surface. The steam treatment of the electrodes improved the benzoic acid oxidation and the photocurrent because it promoted the titania densification and enhanced the interaction between the benzoic acid and titania. The benzoic aciddoped titania is a valid model of the fuel material concentrated in the porous titania when using benzoic acid as the fuel material. The contact between the benzoic acid and titania is important in order to obtain a high photofuel electric conversion.
机译:由含苯甲酸的钛醇盐溶胶制备苯甲酸掺杂的二氧化钛电极,以检查浓缩在光燃料电池电极的二氧化钛表面上的燃料材料的光催化反应。进行这种掺杂是为了了解二氧化钛的物理化学过程,而不是促进光燃料电池的实际使用。观察到的光电流以及CO_2和H_2O的产生表明,苯甲酸的氧化增强了UV照射期间的电产生。苯甲酸分子应被氧分子和二氧化钛表面的空穴氧化。电极的蒸汽处理改善了苯甲酸的氧化和光电流,因为它促进了二氧化钛的致密化并增强了苯甲酸和二氧化钛之间的相互作用。当使用苯甲酸作为燃料材料时,掺杂苯甲酸的二氧化钛是浓缩在多孔二氧化钛中的燃料材料的有效模型。为了获得高的光燃料电转化率,苯甲酸和二氧化钛之间的接触很重要。

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