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Comparison of structural and optical properties of TeO2 nanostructures synthesized using various substrate conditions

机译:用各种衬底条件合成TEO2纳米结构的结构和光学性质的比较

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摘要

Several TeO2 low-dimensional nanostructures were prepared by thermal evaporation using four substrate conditions: (1) a bare substrate, (2) a scratched substrate, (3) a Au-catalyst-assisted substrate, and (4) a multi-walled carbon nanotube (MWCNT)-assisted substrate. Scanning electron microscopy and transmission electron microscopy analysis reveals that the morphologies of the nanostructures synthesized using these methods gradually changed from nanoparticles to ultra-thin nanowires with single tetragonal-type TeO2. Photoluminescence (PL) spectra reveal that the PL intensities of the TeO2 nanomaterials obtained using methods (1) and (2) are slightly increased, whereas the intensities of the TeO2 nanostructures obtained using methods (3) and (4) differ significantly depending on the initial substrate conditions. The emission peak is also blue-shifted from 440 nm to 430 nm for the scratched surface condition due to an excitonic transition. The increase in the blue emission for the MWCNT-assisted condition is attributed to the degree and type of excitons and defects in the TeO2 nanostructures.
机译:通过使用四个基材条件的热蒸发制备几种TEO2低型纳米结构:(1)裸衬底,(2)刮擦底物,(3)Au-催化剂辅助基板,和(4)多壁碳纳米管(MWCNT)基底。扫描电子显微镜和透射电子显微镜分析表明,使用这些方法合成的纳米结构的形态逐渐从纳米颗粒转化为单四方型TEO2的超薄纳米线。光致发光(PL)光谱揭示使用方法(1)和(2)获得的TEO2纳米材料的PL强度略微增加,而使用方法(3)和(4)获得的TEO2纳米结构的强度取决于初始衬底条件。由于激发力转变,发射峰也从440nm到430nm的蓝移到440nm至430nm。 MWCNT辅助病症的蓝色发射的增加归因于TEO2纳米结构中的激子和缺陷的程度和类型。

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