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首页> 外文期刊>Digest Journal of Nanomaterials and Biostructures >STUDY OF OPTICAL ENERGY GAP AND QUANTUM CONFINMENT EFFECTS IN ZINC OXIDE NANOPARTICLES AND NANORODS
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STUDY OF OPTICAL ENERGY GAP AND QUANTUM CONFINMENT EFFECTS IN ZINC OXIDE NANOPARTICLES AND NANORODS

机译:氧化锌纳米粒子和纳米粒子的光能隙和量子约束效应的研究

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ZnO sol-gel nanoparticles (NPs) and nanorods (NRs) were prepared by simple chemical method. The resulting NPs and NRs have been characterized by X-Ray Diffraction, TEM, UV-Vis absorption and steady-state photoluminescence (PL) spectroscopy.(XRD) results showed that all samples were single phase wurtzite structure and broadening peaks for ZnO nanoparticles as compared to NRs. The morphology of the nanostructures was observed in transmission emission microscope. The NPs have average diameter ~ 4 nm and the NRs have ~ 18 nm diameter and ~ 100 nm length. The band gap was calculated from the UV-Visible spectrum and found to be 3.39 eV for NPs and 3.2 eV for NRs. This variation of optical energy gap is due to quantum confinement effect when is the material changed from nanoparticles to nanorods. However, the measured NPs and NRs diameters indicate that the charge carriers are located in a strong and weak confinement regime, respectively.The PL reveals that the ultraviolet emission intensity of ZnO nanoparticles decreases from 396 to 367 nm and shifts towards the blue region by reducing the size as compared to nanorods which is consistent with UV-visible absorption.
机译:采用简单的化学方法制备了ZnO溶胶-凝胶纳米颗粒(NPs)和纳米棒(NRs)。通过X射线衍射,TEM,UV-Vis吸收和稳态光致发光(PL)光谱对所得的NP和NR进行了表征。(XRD)结果表明,所有样品均为单相纤锌矿结构,并且ZnO纳米粒子的加宽峰为与NR相比。在透射发射显微镜下观察纳米结构的形态。 NP的平均直径约为4 nm,NR的直径约为18 nm,长度约为100 nm。根据UV-可见光谱计算带隙,发现NPs为3.39 eV,NRs为3.2 eV。当材料从纳米颗粒变为纳米棒时,光能隙的这种变化是由于量子限制效应引起的。然而,实测的NPs和NRs直径表明电荷载流子分别处于强约束和弱约束状态.PL揭示了ZnO纳米颗粒的紫外线发射强度从396 nm减小到367 nm,并通过减少向蓝光区域转移与纳米棒相比,其尺寸与紫外线可见吸收一致。

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