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A High-Efficiency TiO2/ZnO Nano-Film with Surface Oxygen Vacancies for Dye Degradation

机译:具有表面氧空位的高效TiO2 / ZnO纳米膜用于染料降解

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摘要

Photocatalytic degradation of organic pollutants in water is a highly efficient and green approach. However, the low quantum efficiency is an intractable obstacle to lower the photocatalytic efficiency of photocatalysts. Herein, the TiO2/ZnO heterojunction thin films combined with surface oxygen vacancies (OVs) were prepared through magnetron sputtering, which was designed to drive rapid bulk and surface separation of charge carriers. The morphology and structural and compositional properties of films were investigated via different techniques such as SEM, XRD, Raman, AFM, and XPS. It has been found that by controlling the O2/Ar ratio, the surface morphology, thickness, chemical composition, and crystal structure can be regulated, ultimately enhancing the photocatalytic performance of the TiO2/ZnO heterostructures. In addition, the heterojunction thin film showed improved photocatalytic properties compared with the other nano-films when the outer TiO2 layer was prepared at an O2/Ar ratio of 10:35. It degraded 88.0% of Rhodamine B (RhB) in 90 min and 90.8% of RhB in 120 min. This was attributed to the heterojunction interface and surface OVs, which accelerated the separation of electron–hole (e–h) pairs.
机译:水中有机污染物的光催化降解是一种高效和绿色的方法。然而,低量子效率是降低光催化剂光催化效率的难以处理的障碍。这里,通过磁控溅射制备与表面氧空位(OVS)结合的TiO 2 / ZnO异质结薄膜,其被设计为驱动电荷载体的快速体积和表面分离。通过不同的技术(如SEM,XRD,拉曼,AFM和XPS)研究薄膜的形态和结构和组成特性。已经发现,通过控制O 2 / Ar比,可以调节表面形态,厚度,化学成分和晶体结构,最终增强TiO 2 / ZnO异质结构的光催化性能。另外,与外部TiO 2层以10:35的比例制备时,异质结薄膜与其他纳米膜相比,与其他纳米膜相比,相比的光催化性能改善。它在90分钟内降解了88.0%的罗丹明B(RHB)和90分钟的90.8%的RHB。这归因于异质结界面和表面OV,其加速了电子孔(E-H)对的分离。

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