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Preparation and photoelectrocatalytic properties of titania/carbon nanotube composite films

机译:二氧化钛/碳纳米管复合膜的制备及光电催化性能

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Composite films of TiO2 and carbon nanotubes (CNTs) were prepared on titanium sheets by liquid phase deposition and the photoelectrocatalytic (PEC) properties of the films were investigated through the degradation of methyl orange (MO) in 0.1 M solutions. It was demonstrated that CNTs in the TiO2 film significantly decreased the charge transfer resistance and increased the anodic photocurrent response of the film under UV light irradiation when the bias was above -0.1 V. The PEC performance of the CNT-based composite film could be tuned by controlling the preparation parameters including the deposition time and calcination temperature. The deposition time and calcination temperature were optimized at 1 h and 450 °C, respectively. On the TiO2/CNT film prepared under the optimized conditions, 95% of the added MO (10 mg L~(-1)) was degraded within 90 min, which was much higher than the 60% removal seen on the pure TiO2 films.
机译:通过液相沉积在钛片上制备了TiO2和碳纳米管(CNT)的复合膜,并通过在0.1 M溶液中降解甲基橙(MO)研究了膜的光电催化(PEC)性能。结果表明,当偏压高于-0.1 V时,TiO2膜中的CNT显着降低了电荷转移电阻,并增加了膜在紫外光下的阳极光电流响应。可以调节CNT基复合膜的PEC性能通过控制制备参数,包括沉积时间和煅烧温度。沉积时间和煅烧温度分别在1 h和450°C下进行了优化。在优化条件下制备的TiO2 / CNT膜上,在90分钟内降解了95%的添加MO(10 mg L〜(-1)),这比纯TiO2膜上的60%去除率高得多。

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