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TiO2 Films Modified with Au Nanoclusters as Self-Cleaning Surfaces under Visible Light

机译:金纳米团簇修饰的TiO2薄膜在可见光下的自清洁表面

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摘要

In this study, we applied cluster beam deposition (CBD) as a new approach for fabricating efficient plasmon-based photocatalytic materials. Au nanoclusters (AuNCs) produced in the gas phase were deposited on TiO2 P25-coated silicon wafers with coverage ranging from 2 to 8 atomic monolayer (ML) equivalents. Scanning Electron Microscopy (SEM) images of the AuNCs modified TiO2 P25 films show that the surface is uniformly covered by the AuNCs that remain isolated at low coverage (2 ML, 4 ML) and aggregate at higher coverage (8 ML). A clear relationship between AuNCs coverage and photocatalytic activity towards stearic acid photo-oxidation was measured, both under ultraviolet and green light illumination. TiO2 P25 covered with 4 ML AuNCs showed the best stearic acid photo-oxidation performance under green light illumination (Formal Quantum Efficiency 1.6 × 10−6 over a period of 93 h). These results demonstrate the large potential of gas-phase AuNCs beam deposition technology for the fabrication of visible light active plasmonic photocatalysts.
机译:在这项研究中,我们应用簇束沉积(CBD)作为制造高效等离激元基光催化材料的新方法。将气相产生的金纳米团簇(AuNCs)沉积在TiO2 P25涂层的硅片上,其覆盖范围为2到8个原子单层(ML)当量。 AuNCs改性的TiO2 P25膜的扫描电子显微镜(SEM)图像显示,表面被AuNC均匀覆盖,在低覆盖率(2 ML,4 ML)下保持隔离,而在较高覆盖率(8 ML)下聚集。在紫外线和绿光照射下,AuNCs的覆盖范围与对硬脂酸光氧化的光催化活性之间存在明确的关系。用4毫升AuNCs覆盖的TiO2 P25在绿光照射下表现出最佳的硬脂酸光氧化性能(在93 h内的正式量子效率1.6×10 −6 )。这些结果证明了气相AuNCs束沉积技术在制造可见光活性等离激元光催化剂方面的巨大潜力。

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