Nanostructured TiO 2 porous film supported on nickel was prepared through sol-gel process,and was used as photoelectrode in solar energy photoelectrochemical cell.It was found that short circuit photocurrent and open ...Nanostructured TiO 2 porous film supported on nickel was prepared through sol-gel process,and was used as photoelectrode in solar energy photoelectrochemical cell.It was found that short circuit photocurrent and open circuit photovoltage of the photoelectrodes increased with the increment of sintering temperature and thickness of TiO 2 film.Through STM,the pore quantity and diameter of nanostructured TiO 2 film were found to increase with the increment of sintering temperature.It was found that the transparence of different thickness nanostructured TiO 2 films coated on quartz did not change much.展开更多
目的研究光电功能涂层制备方法对粉末薄膜光电极的光电转换效率的影响。方法采用喷涂法制备光电材料的FTO薄膜光电极,观察其表面形貌,通过研究光电流和光电位的变化评价光电材料的光电转换效率,并与点涂法和电泳法制备的光电极进行对比...目的研究光电功能涂层制备方法对粉末薄膜光电极的光电转换效率的影响。方法采用喷涂法制备光电材料的FTO薄膜光电极,观察其表面形貌,通过研究光电流和光电位的变化评价光电材料的光电转换效率,并与点涂法和电泳法制备的光电极进行对比分析。结果喷涂法制备的二氧化钛FTO薄膜光电极性能优于其他两种方法制备的电极,在3.5%氯化钠溶液中,光电位变化更稳定,压降大于500 m V,光电流变化大于60μA/cm^2。结论喷涂法制备光电极能够提高半导体粉末材料的光电化学效率,是一种可推行的薄膜光电极制备方法。展开更多
文摘Nanostructured TiO 2 porous film supported on nickel was prepared through sol-gel process,and was used as photoelectrode in solar energy photoelectrochemical cell.It was found that short circuit photocurrent and open circuit photovoltage of the photoelectrodes increased with the increment of sintering temperature and thickness of TiO 2 film.Through STM,the pore quantity and diameter of nanostructured TiO 2 film were found to increase with the increment of sintering temperature.It was found that the transparence of different thickness nanostructured TiO 2 films coated on quartz did not change much.
文摘目的研究光电功能涂层制备方法对粉末薄膜光电极的光电转换效率的影响。方法采用喷涂法制备光电材料的FTO薄膜光电极,观察其表面形貌,通过研究光电流和光电位的变化评价光电材料的光电转换效率,并与点涂法和电泳法制备的光电极进行对比分析。结果喷涂法制备的二氧化钛FTO薄膜光电极性能优于其他两种方法制备的电极,在3.5%氯化钠溶液中,光电位变化更稳定,压降大于500 m V,光电流变化大于60μA/cm^2。结论喷涂法制备光电极能够提高半导体粉末材料的光电化学效率,是一种可推行的薄膜光电极制备方法。