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Electrochemical synthesis of p-Cu2O/n-TiO2 heterojunction electrode with enhanced photoelectrocatalytic activity

机译:具有增强光电催化活性的P-Cu2O / N-TiO2异质结电极的电化学合成

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A uniform p-Cu2O/n-TiO2 heterojunction electrode was synthesized using electrochemical anodization and pulse electrodeposition. The nucleation and growth of Cu2O nanoparticles under pulse potential were investigated and controlled. Energy-dispersive X-ray spectroscopy analysis showed that Cu2O nanoparticles (NPs) were uniformly dispersed on the TiO2 nanotube (TiO2 NT) surface. X-ray photoelectron spectroscopy and X-ray diffraction analyses indicated the formation of Cu2O. The electrodeposition of Cu2O on the TiO2 NT surface enhanced visible light response. The current-voltage curve of the Cu2O/n-TiO2 electrode revealed the formation of the Cu2O/n-TiO2 p-n heterojunction. The Cu2O/n-TiO2 electrode exhibited reduced charge transfer resistance and enhanced charge separation, as indicated by the photoluminescence emission spectra, transient photocurrent response, and photovoltage measurements. The uniform Cu2O/n-TiO2 heterojunction electrode exhibited enhanced photoelectrocatalytic (PEC) activity toward the degradation of chloramphenicol (CAP) compared with the pristine TiO2 NT electrode. The Cu2O/n-TiO2 electrode under electrodeposition cycles of 400 displayed the highest PEC activity. The enhanced activity is due to the synergistic effect between the uniform p-Cu2O/n-TiO(2)heterojunction and the small bias potential. The radical species that play a major role in the PEC degradation of CAP are center dot OH radicals. A possible PEC mechanism of the uniform Cu2O/n-TiO2 heterojunction electrode was proposed.
机译:使用电化学阳极氧化和脉冲电沉积合成均匀的P-CU2O / N-TiO 2异质结电极。研究了脉冲电位下Cu2O纳米颗粒的成核和生长。能量分散X射线光谱分析显示Cu 2 O纳米颗粒(NPS)均匀地分散在TiO 2纳米管(TiO 2 NT)表面上。 X射线光电子能谱和X射线衍射分析表明Cu2O的形成。 Cu2O对TiO2 NT表面的电沉积增强了可见光响应。 Cu 2 O / N-TiO2电极的电流电压曲线显示Cu2O / N-TiO2 P-N异质结的形成。如光致发光发射光谱,瞬态光电流响应和光电测量所示,Cu2O / N-TiO 2电极表现出降低的电荷转移电阻和增强的电荷分离。与原始TiO 2 NT电极相比,均匀的Cu2O / N-TiO 2杂偶联电极表现出增强的光电催化剂(PEC)活性(PEC)的降解氯霉素(帽)。电沉积在400的电沉积循环下的Cu2O / n-TiO2电极显示出最高的PEC活性。增强的活性是由于均匀的P-CU2O / N-TiO(2)异质结和小偏置电位之间的协同效应。在PEC盖子的PEC劣化中发挥重要作用的自由基物种是中心点OH激进态。提出了一种均匀Cu2O / N-TiO2异质结电极的可能PEC机理。

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