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Structural, vibrational and electronic properties of CuO nanoparticles synthesized via exploding wire technique

机译:通过爆炸线技术合成CuO纳米粒子的结构,振动和电子性能

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The study of mixed phase Cu/Cu2O/CuO nanoparticles synthesized by Exploding Wire Technique has been recently reported by us. Aiming to achieve single phase CuO nanoparticles, the mixed phase Cu/Cu2O/CuO nanoparticles were subjected to annealing at different temperature and time durations in oxygen environment. In this article, we discussed two samples; two phase Cu2O/CuO and single phase pure CuO nanoparticles obtained by annealing at 500 degrees C and 900 degrees C for 10 h. Rietveld refinement and Williamson-Hall analyses revealed formation of pure phase of CuO at 900 degrees C with an average crsytallite size of 27.6 nm. Irregular shape of nanoparticles with average size of 8 nm was observed by Transmission Electron Microscopy. Selected Area Electron Diffraction pattern matches with standard interplanar distance of CuO. Fourier Transform Infrared and Micro-Raman (mu R) spectra exhibit broadening of vibrational modes; indicative of pure phase CuO at 900 degrees C. Extensive X-ray Photoelectron Spectroscopy analysis revealed that the percentage contributions of Cu1+ and oxygen vacancy (V-O) decreases whereas; Cu2+ and interstitial oxygen (O-1) enhances on increasing the annealing temperature from 500 degrees C to 900 degrees C and thus, resulting the pure phase formation of CuO nanoparticles. Notably, through our analyses we propose an electronic band structure diagram on the basis of valance band maximum, as obtained by XPS and the band gap energy as estimated via UV-visible spectroscopy for mixed phase of Cu2O/CuO (1.6 +/- 0.02 eV) and pure phase of CuO (1.3 +/- 0.02 eV) nanoparticles.
机译:通过爆炸线技术合成的混合相Cu / Cu2O / CuO纳米颗粒的研究已被美国报道。旨在实现单相CuO纳米颗粒,在氧环境中的不同温度和时间持续时间内进行混合相Cu / Cu 2 O / CuO纳米颗粒。在本文中,我们讨论了两个样本;通过以500℃和900℃的退火10小时,通过退火获得两相Cu2O / cuO和单相纯CuO纳米颗粒。 RIETVELD改进和WILLIAMSON-HALL分析揭示了900摄氏度在900摄氏度下形成了CUO的纯阶段,平均克西钛合金尺寸为27.6nm。通过透射电子显微镜观察到具有平均尺寸为8nm的纳米颗粒的不规则形状。选择的区域电子衍射图案与CUO标准的平坦距离匹配。傅里叶变换红外线和微拉曼(MU R)光谱表现出振动模式的扩大;指示900℃的纯相CuO。广泛的X射线光电子体光谱分析显示Cu1 +和氧空位(V-O)的百分比贡献减少而变化; Cu2 +和间质氧(O-1)增强了从500℃至900℃的退火温度增加,从而产生CuO纳米颗粒的纯相形成。值得注意的是,通过我们的分析,我们提出了基于价值带的电子带结构图,如通过XPS和带隙能量所获得的,如通过UV可见光谱估计的Cu2O / CuO的混合相(1.6 +/- 0.02eV )CuO(1.3 +/- 0.02eV)纳米颗粒的纯相。

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