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Annealing effect on the photoelectrochemical and photocatalytic performance of TiO2 nanorod arrays

机译:退火对TiO 2 纳米棒阵列的光电化学和光催化性能的影响

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TiO2 nanorod arrays (NRAs) with 540 nm length and an amorphous porous structure, were fabricated by oblique angle deposition method. The as-prepared amorphous TiO2 NRAs transform gradually into anatase phase after annealing with a temperature higher than 350 °C, whereas the specific surface area decreases due to the better crystallinity. The intensity of hydroxyl groups increases with enhancing annealing temperature, then decreases above 450 °C. The photocatalytic and photo-conversion properties benefit from the high crystallinity of TiO2 NRAs and high density of hydroxyl groups on the surface. It shows that TiO2 NRAs annealed at 450 °C exhibit the highest photoconversion efficiency and maximum degradation rate of MO, which can be ascribed to the excellent crystallization and the optimum density of hydroxyl groups on the surface of TiO2. The TiO2 NRAs with enhanced crystallinity and fine structures are very promising for photocatalyst materials for environmental protection.
机译:采用斜角沉积法制备了540nm长的非晶态多孔结构TiO 2 纳米棒阵列。制备的非晶态TiO 2 NRAs在高于350°C的温度退火后逐渐转变为锐钛矿相,而比表面积却由于结晶度的提高而减小。羟基的强度随退火温度的升高而增加,然后在450°C以上降低。 TiO 2 NRA的高结晶度和表面羟基的高密度使它具有光催化和光转化性能。结果表明,在450°C退火的TiO 2 NRA表现出最高的光转化效率和最大的MO降解速率,这归因于其优异的结晶度和最佳的密度。 TiO 2 表面的羟基。具有增强的结晶度和精细结构的TiO 2 NRA对于用于环境保护的光催化剂材料非常有希望。

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