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Quasi-core-shell TiO2/WO3 and WO3/TiO2 nanorod arrays fabricated by glancing angle deposition for solar water splitting

机译:通过掠射角沉积制备的准核壳TiO2 / WO3和WO3 / TiO2纳米棒阵列用于太阳能水分解

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摘要

Unique quasi-core-shell nanorod arrays of TiO2/WO3 and WO3/TiO2 are fabricated on indium tin oxide coated glass substrates by dynamic shadowing growth using glancing angle deposition. The resulting heterostructures are characterized by X-Ray diffraction, UV-vis absorption spectroscopy, scanning electron microscopy, and photoelectrochemical measurements. The incident-photon-to-current-efficiency and absorbance measurements show that the TiO2-core/WO3-shell structures have a distinct photoresponse in the UV range, with wavelength λ ≤ 400 nm, while the WO3-core/TiO2-shell structures show stronger visible light absorption and photocurrent out to λ ~ 600 nm. Mott-Schottky measurements give a flat-band potential of -0.28 V, a carrier density of 1.47 x 10~(20) cm~(-3), and a space charge layer of 100 nm for the WO3-core/TiO2-shell samples. These results suggest that the quasi-core-shell nanorods preserves the optical properties and water splitting performance of the core while the surface properties such as the flat band potential of the nanorods are modified by the shell. This approach affords a simple and powerful method for designing nanostructures with improved photoelectrochemical properties.
机译:TiO2 / WO3和WO3 / TiO2独特的准核壳纳米棒阵列是通过使用掠射角沉积进行动态阴影生长在氧化铟锡涂层的玻璃基板上制造的。所得的异质结构通过X射线衍射,紫外可见吸收光谱,扫描电子显微镜和光电化学测量进行表征。入射光子对电流的效率和吸光度测量表明,TiO2-核/ WO3-壳结构在紫外范围内具有明显的光响应,波长为λ≤400 nm,而WO3-核/ TiO2-壳结构可见光吸收更强,光电流达到λ〜600 nm。 Mott-Schottky测量得出WO3-核/ TiO2-壳的平带电势为-0.28 V,载流子密度为1.47 x 10〜(20)cm〜(-3),并且空间电荷层为100 nm样品。这些结果表明,准核-壳纳米棒保留了核的光学性质和水分解性能,而壳修饰了诸如纳米棒的平带势的表面性质。这种方法为设计具有改善的光电化学性质的纳米结构提供了一种简单而有效的方法。

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