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Photoelectrochemical and photocatalytic properties of nanocn stalline TiO_2 electrodes

机译:Nanocn Stalline TiO_2电极的光电化学和光催化性能

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The electrochemical and photocatalytic properties of a TiO_2 film deposited on transparent electrodes were investigated. Its electrochemical behavior was typical of an n-type semiconductor electrode. Its photocatalytic activity, investigated for phenol degradation on an optical bench (area of 1 cm~2, 5 mL of solution), revealed small currents (3 μA) and poor total organic carbon (TOC) removal (5 %) when the electrode was biased at + 1.1 V in the dark for 3 h. Under polychromatic irradiation, the electrode presented 25 μA of current and 12 % of phenol degradation. A better performance was achieved for photoelectrocatalytic configuration, when the electrode was irradiated and biased with + 0.6 V. Experiments done under irradiation with a metallic vapor lamp using 9 cm~2 electrodes and 10 mL of solution revealed that heterogeneous photocatalysis configuration (HPC) resulted in 50 % of TOC removal, while 85 % was achieved by the electro-assisted process (EHPC). Both the configurations exhibited pseudo-first order kinetics for phenol degradation, but the rate constant was two times that of EHPC. The application of a potential bias to the TiO_2 porous electrode must enhance the photogenerated electron/hole separation, which minimize the charge recombination and increases its photocatalytic activity towards organic pollutant degradation.
机译:研究了沉积在透明电极上的TiO_2膜的电化学和光催化性能。其电化学行为是典型的n型半导体电极。其光催化活性在光学台上(面积为1cm〜2,5ml溶液),揭示了电极的小电流(3μA)和差的总有机碳(TOC)去除(5%)上的苯酚降解在黑暗中偏置+ 1.1V 3小时。在多色照射下,电极呈现25μA的电流和12%的苯酚降解。当电极被照射并用+ 0.6V偏压时,为光电催化构态实现了更好的性能。使用9cm〜2电极的金属蒸汽灯在照射下进行的实验和10ml溶液显示出非均相光催化构型(HPC)在去除TOC的50%中,通过电辅助方法(EHPC)实现85%。两种配置都表现出伪第一阶动力学进行酚类降解,但速率常数是EHPC的两倍。将电位偏压施加到TiO_2多孔电极必须增强光发性的电子/空穴分离,这使得电荷重组最小化并增加其光催化活性朝向有机污染物降解。

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