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首页> 外文期刊>RSC Advances >Single reactor deposition of silicon/tungsten oxide core-shell heterostructure nanowires with controllable structure and optical properties
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Single reactor deposition of silicon/tungsten oxide core-shell heterostructure nanowires with controllable structure and optical properties

机译:具有可控制的结构和光学特性的硅/钨氧化物核壳异质结构纳米线的单反应器沉积

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摘要

We report the controllable growth of silicon/tungsten oxide (Si/WO3) core-shell heterostructure nanowires via a two-step route using a home-built plasma-assisted hot-wire chemical vapour deposition reactor. Uniform coating of WO3 shell indicates a clear preference for growth on the single crystalline Si nanowires. Structure and crystallinity of the WO3 shell are strongly dependent on the filament temperature (T-f). X-ray diffraction patterns and micro-Raman spectra suggested that there was a structure evolution from amorphous into crystallite WO3 monoclinic structure when Tf was increased to 1300 degrees C and above. The WO3 shell exhibits stoichiometric tungsten trioxide structure as identified by micro-Raman and X-ray photoemission spectra analyses, which showed only W6+-O vibration modes for the former analysis and W6+ energy band for the latter. Microstructure, crystal lattice, interface and growth orientation of the core-shell nanowires were recognized using a high resolution transmission electron microscopy. Our results showed that the core-shell nanowires had preserved the optical transmittance of Si core at a longer wavelength, while showing an additional transmission band edge at a shorter wavelength due to tungsten oxide coating. Their optical absorption increased to 80% and above in visible region, owing to the one-dimensional Si NWs backbone. Optical band gap of the core-shell nanowires showed a variation from 2.4 to 1.8 eV with T-f. This superior visible light absorption core-shell nanowires architecture subsequently enhanced the photocurrent density of the crystalline WO3 nanostructures.
机译:我们报告了使用自制的等离子辅助热线化学气相沉积反应器通过两步路线可控生长的硅/钨氧化物(Si / WO3)核壳异质结构纳米线。 WO3外壳的均匀涂层表明明显倾向于在单晶Si纳米线上生长。 WO3壳的结构和结晶度在很大程度上取决于灯丝温度(T-f)。 X射线衍射图谱和显微拉曼光谱表明,当Tf增加到1300℃以上时,存在从非晶态到微晶WO3单斜晶结构的演化。通过微拉曼光谱和X射线光发射光谱分析确定,WO3壳层显示化学计量的三氧化钨结构,前者分析仅显示W6 + -O振动模式,后者显示W6 +能带。核壳纳米线的显微结构,晶格,界面和生长方向可以通过高分辨率透射电子显微镜观察到。我们的结果表明,核壳纳米线在更长的波长下保留了Si核的透光率,而由于氧化钨涂层,在较短的波长下显示了额外的透射带边缘。由于一维Si NWs主链,它们在可见光区域的光吸收增加到80%以上。核-壳纳米线的光学带隙随T-f显示从2.4到1.8 eV的变化。这种卓越的可见光吸收核-壳纳米线结构随后增强了晶体WO3纳米结构的光电流密度。

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