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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Characterization and photocatalytic performance of carbon nanotube material-modified TiO2 synthesized by using the hot CVD process
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Characterization and photocatalytic performance of carbon nanotube material-modified TiO2 synthesized by using the hot CVD process

机译:热CVD法合成碳纳米管材料修饰的TiO2的表征及光催化性能

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摘要

Carbon nanotube-modified TtO2 was synthesized by using the hot CVD process. Fe (0.13-1.9 wt%) as the catalyst for synthesis of carbon nanotubes modified on the surface of TiO2, was loaded on commercial TiO2 particles. CH4 gas was used as the carbon source in the CVD process. The color of the Fe-supported TiO2 powder changed to black when CVD treatment was performed. Nano-sized spherical carbon materials were generated on the surface of TiO2 after the CVD process. The spherical materials gradually changed to carbon nanotubes with increase in CVD treatment temperature. When the CVD process was performed under optimized conditions, the photocatalytic activity of the carbon nanotube-modified TiO2 was drastically increased. These results indicated that photoexcited electrons might pass through the carbon nanotubes on the surface of TiO2 resulting in improvement in charge separation between electrons and holes generated photocatalytically. For our system, the carbon nanotube materials were grown directly on the surface of TiO2 and this might induce strong interaction between carbon nanotubes and TiO2. Meanwhile, the long-range π electronic conjugation of nanotubes is of benefit to accelerate electron transfer. Thus, the photogenerated electrons of TiO2 are rapidly transported to the carbon nanotube materials bound to the surface of TiO2. The transfer of electrons generated in TiO2 to carbon nanotubes was confirmed by photodeposition of Pt particles by reduction of Pt~(4+) ions.
机译:通过热CVD工艺合成了碳纳米管改性的TtO2。将Fe(0.13-1.9 wt%)作为用于合成在TiO2表面改性的碳纳米管的催化剂,负载在市售TiO2颗粒上。 CH4气体在CVD工艺中用作碳源。当进行CVD处理时,Fe负载的TiO 2粉末的颜色变为黑色。在CVD工艺之后,在TiO2的表面上产生了纳米级球形碳材料。随着CVD处理温度的升高,球形材料逐渐变为碳纳米管。当在最佳条件下进行CVD工艺时,碳纳米管改性的TiO2的光催化活性急剧增加。这些结果表明,光激发的电子可能通过TiO2表面的碳纳米管,从而改善了电子与光催化产生的空穴之间的电荷分离。对于我们的系统,碳纳米管材料直接生长在TiO2的表面上,这可能会引起碳纳米管与TiO2之间的强烈相互作用。同时,纳米管的长距离π电子共轭有利于加速电子转移。因此,TiO 2的光生电子被快速传输到结合到TiO 2表面的碳纳米管材料上。通过还原Pt〜(4+)离子对Pt颗粒进行光沉积,证实了TiO2中产生的电子向碳纳米管的转移。

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