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An Investigation of Interfacial and Photoelectrochemical Performance of Thermally Prepared C,N-codoped TiO2 Photoanodes for Water Splitting

机译:对热制备的C,N编码的TIO2光射线的界面和光电化学性能的研究

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In the present study, C,N-codoped TiO2 (C,N-TiO2) thin film photoanodes are prepared by a thermal treatment of titanium substrates embedded in various materials such as aluminosilicates (zeolite) or alumina particles and heat treated at 500℃ for 3 h in a carbon contaminated muffle furnace. The prepared C,N-codoped TiO2 photoanodes showed a significant water oxidation with the highest photo currents of about 100 mA cm~(-2) at zero bias versus (Ag/AgCl) using alumina as reactant medium under a standard 1 SUN illumination of solar simulator when compared to pure TiO2 (~25mA cm(-2)) in 1 M KOH electrolyte. The C,N-codoped TiO2 photoanode showed stable photocurrent for about 10 hours in the long term stability test. The physico-chemical properties of the prepared C,N-codoped TiO2 thin film sample was examined by Scanning electron microscopy, Energy dispersive X-rays, X-ray diffractions, X-ray photoelectron spectroscopy, UV-visible diffuse reflectance spectroscopy and electrochemical impedance measurements for light harvesting (photo absorption) characteristics. It is found that the C,N-codoped TiO2 exhibited strong absorption to visible-light region and improved electron donor density than pure TiO2 from UV-Vis absorbance spectra and Mott-Schottky analysis, respectively. The enhanced photoelectrochemical performance of the C,N-codoped TiO2 could be ascribed to the strong visible light absorption through band gap reduction and suppression of electrons-holes recombination process.
机译:在本研究中,C,N编码的TIO2(C,N-TIO2)薄膜光阳极通过热处理嵌入各种材料中的钛底物的热处理,例如铝硅酸盐(Zeolite)或氧化铝颗粒,并在500°℃ 3小时在碳污染的炉子炉中。制备的C,N编码的TiO2光射台显示出明显的水氧化,使用氧化铝作为标准的1太阳照明,在零偏见与零偏置(AG/AGCL)处于零偏置(AG/AGCL)的最高光电流为零偏见(AG/AGCL)。与1 M KOH电解质中的纯TiO2(〜25ma cm(-2))相比,太阳能模拟器。在长期稳定性测试中,C,N编码的TiO2光阳极显示稳定的光电流约10小时。通过扫描电子显微镜,能量分散X射线,X射线衍射,X射线光电学光谱,UV-Visible Exibible Expofuse Spectroscoppy和电化学障碍物检查,检查了制备C,N编码的TIO2薄膜样品的物理化学特性。光收集(照片吸收)特征的测量。发现C,N编码的TIO2分别比UV-VIS吸光度光谱和Mott-Schottky分析的纯TIO2表现出强吸收到可见光区域和电子供体密度的强烈吸收。 C,N编码的TIO2的光电化学性能增强了,可以归因于通过减小带隙和电子孔 - 孔孔重组过程的强可见光吸收。

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