Department of Materials Science and Engineering, Feng Chia University, Taichung 407, Taiwan.
Nanotechnology. 2016 Aug 12;27(32):325401. doi: 10.1088/0957-4484/27/32/325401. Epub 2016 Jun 29.
The effects of hydrogen thermal and plasma treatment on the formation and photocatalytic activities of black TiO2 nanowire arrays were investigated and discussed. After either the hydrogen thermal or plasma treatment, the TiO2 nanowires remained. However, in contrast to the plasma treated nanowires, the diameter of the thermal treated TiO2 nanowires reduced more significantly, which was attributed to a thicker surface amorphous layer and more oxygen vacancies. A higher photoresponse in both UV and visible light regions and more hydroxide groups were also observed for the thermal treated nanowires. In addition, the black nanowires possessed greater carrier concentration, leading to a more efficient separation of electron-hole pairs. As a consequence, much enhanced photoelectrochemical water splitting and photocatalytic degradation of methylene blue were obtained.
研究并讨论了氢气热等离子体处理对黑 TiO2 纳米线阵列的形成及光催化活性的影响。经氢气热或等离子体处理后,TiO2 纳米线仍保留。然而,与经等离子体处理的纳米线相比,经热处理的 TiO2 纳米线的直径显著减小,这归因于较厚的表面非晶层和更多的氧空位。在紫外光和可见光区域均观察到更高的光响应,并且热处理的纳米线具有更多的氢氧根基团。此外,黑色纳米线具有更高的载流子浓度,从而导致电子-空穴对更有效地分离。因此,获得了光电化学水分解和亚甲基蓝光催化降解的显著增强。