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Enhancement of spectral response of visible light absorption of TiO2 synthesis by femtosecond laser ablation

机译:飞秒激光烧蚀增强TiO2合成可见光吸收光谱响应

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In this study, we report a simple, precise, and nano-scale fabrication technique for oxide nanosphere structure rutile (TiO2) using couple hundred of femtosecond laser irradiation at MHz pulse repetition frequency in air at atmospheric pressure. Measured reflectance's through Spectroradiometer show that their couplings of incident electromagnetic irradiations are improved greatly over the broad band wavelength range. Lower reflectance intensity obtained with long dwell time is due to generate bulk quantity of TiO2 oxide nanoparticle agglomerate by fusion, and form interweaving fibrous structures that show certain degree of assembly. The X-ray diffraction test confirmed that the oxide titanium metallic nanostructure is a rutile phase (TiO2). The growth of TiO2 nanostructure is highly recommended for the applications of dye-sensitized solar cells and photovoltaic applications
机译:在这项研究中,我们报告了一种简单,精确,纳米级的氧化物纳米球结构金红石(TiO2)制造技术,该技术使用几百个飞秒激光辐射,在大气中于空气中以MHz脉冲重复频率进行辐照。通过光谱辐射仪测得的反射率表明,它们在宽波段波长范围内入射电磁辐射的耦合得到了极大改善。长停留时间获得的较低的反射强度是由于通过熔融产生大量的TiO 2氧化物纳米颗粒附聚物,并且形成了显示一定程度组装的交织纤维结构。 X射线衍射测试证实了氧化物钛金属纳米结构是金红石相(TiO 2)。强烈建议将TiO2纳米结构的生长用于染料敏化太阳能电池和光伏应用

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