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Electric Field Assisted Femtosecond Laser Preparation of Au@TiO2 Composites with Controlled Morphology and Crystallinity for Photocatalytic Degradation

机译:Au @ TiO2复合材料的电场辅助飞秒激光制剂具有对照形态和结晶度的光催化降解

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摘要

TiO2 is popular in photocatalytic degradation dye pollutants due to its abundance and its stability under photochemical conditions. Au loaded TiO2 can achieve efficient absorption of visible light and deal with the problem of low conversion efficiency for solar energy of TiO2. This work presents a new strategy to prepare Au nanoparticles-loaded TiO2 composites through electric−field−assisted temporally−shaped femtosecond laser liquid-phase ablation of Au3+ and amorphous TiO2. By adjusting the laser pulse delay and electric field parameters, gold nanoparticles with different structures can be obtained, such as nanospheres, nanoclusters, and nanostars (AuNSs). AuNSs can promote the local crystallization of amorphous TiO2 in the preparation process and higher free electron density can also be excited to work together with the mixed crystalline phase, hindering the recombination between carriers and holes to achieve efficient photocatalytic degradation. The methylene blue can be effectively degraded by 86% within 30 min, and much higher than the 10% of Au nanoparticles loaded amorphous TiO2. Moreover, the present study reveals the crystallization process and control methods for preparing nanoparticles by laser liquid ablation, providing a green and effective new method for the preparation of high-efficiency photocatalytic materials.
机译:由于其在光化学条件下,TiO2在光催化降解染料污染物中受欢迎。 Au装载的TiO2可以实现可见光的有效吸收,并处理TiO2太阳能的低转化效率的问题。该工作介绍了通过Au3 +和无定形TiO2的电场辅助的时间形状模糊激光液相消融制备Au纳米颗粒加载的TiO2复合材料的新策略。通过调节激光脉冲延迟和电场参数,可以获得具有不同结构的金纳米颗粒,例如纳米球,纳米能器和Nanostars(AUNSS)。 AUNS可以促进无定形TiO2在制备过程中的局部结晶,并且还可以激发更高的游离电子密度与混合结晶相的工作,阻碍载体和孔之间的重组以实现有效的光催化降解。亚甲基蓝可以在30分钟内有效降解86%,远高于Au纳米颗粒的10%负载的无定形TiO2。此外,本研究揭示了通过激光液体烧蚀制备纳米颗粒的结晶过程和控制方法,为制备高效光催化材料提供绿色和有效的新方法。

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