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Enhanced Photoelectrochemical Properties of Ti3+ Self-Doped Branched TiO2 Nanorod Arrays with Visible Light Absorption

机译:具有可见光吸收的Ti3 +自掺杂支化TiO2纳米棒阵列的增强的电化学性能

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摘要

A novel Ti3+ self-doped branched rutile TiO2 nanorod arrays (NRAs) was successfully grown on an F-doped tin oxide (FTO) transparent conductive glass by a combined hydrothermal and magnetron sputtering method. Surface morphology, structure, optical properties, and photoelectrochemical behavior of the branched TiO2 NRAs are determined. Using TiO2 nanoparticles (NPs) deposited on the top of the nanorods as seeds, TiO2 nanobranches can easily grow on the top of the nanorods. Moreover, the Ti3+ defects in the TiO2 NPs and associated oxygen vacancies, and the nanobranches expend the optical absorption edge of the TiO2 NRAs from 400 nm to 510 nm. Branched TiO2 NRAs exhibit excellent photoelectrochemical properties compared to the pure TiO2 NRAs, as revealed by photoelectrochemical measurements. This enhanced photoelectrochemical properties is induced by the increased surface area and expanded optical absorption range. Due to their favorable characteristics, these novel branched TiO2 NRAs will provide a new path to the fabrication of hierarchical nanostructured materials.
机译:通过水热和磁控溅射相结合的方法,在F掺杂的氧化锡(FTO)透明导电玻璃上成功生长了新型的Ti 3 + 自掺杂支化金红石型TiO2纳米棒阵列。确定了分支的TiO2 NRA的表面形态,结构,光学性质和光电化学行为。使用沉积在纳米棒顶部的TiO2纳米颗粒(NPs)作为种子,TiO2纳米支可轻松生长在纳米棒的顶部。此外,TiO2 NPs中的Ti 3 + 缺陷和相关的氧空位,纳米支将TiO2 NRA的光吸收边缘从400 nm扩展到510 nm。光电化学测量表明,与纯TiO2 NRA相比,支化的TiO2 NRA具有优异的光电化学性能。通过增加的表面积和扩大的光吸收范围来诱导这种增强的光电化学性能。由于它们的有利特性,这些新颖的支化TiO2 NRA将为制造分层纳米结构材料提供一条新途径。

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