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Photoluminescence and Raman scattering of ZnO nanorods

机译:ZnO纳米棒的光致发光和拉曼散射

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Zinc oxide (ZnO) nanorods were synthesized by a simple microemulsion method. The photoluminescence (PL) spectra at room temperature were measured. The strong UV excitonic emission indicates the good optical properties, and the weak deep-level emission reveals very limited structural defects in the crystals. The multiple peaks in the PL spectrum obtained at 15 K are assigned to the donor-bound exciton (DBE), free to bound transition (FB) and FB-LO phonon replicas. The temperature dependence of energy, intensity, and linewidth of each emission band confirms the effect of thermal ionization progress of excitons and nonradiative recombination activated thermally. The nonresonant Raman scattering spectra at room temperature were excited by He-Ne laser (wavelength approx 632.8 nm). The perfect wurtzite structure in ZnO nanorods has been verified by the intense E_2 modes, which include low and high frequency vibrations. The possible reasons for the red shift and broadening of vibration modes were studied by the resonant Raman scattering spectra at room temperature. The power-dependence of Raman shift and FWHM shows the laser irradiation effect on the vibrational modes.
机译:通过简单的微乳液法合成了氧化锌(ZnO)纳米棒。测量了室温下的光致发光(PL)光谱。强烈的紫外线激子发射表明良好的光学性能,而较弱的深层发射表明晶体中非常有限的结构缺陷。在15 K处获得的PL光谱中的多个峰分配给施主结合的激子(DBE),自由结合跃迁(FB)和FB-LO声子副本。每个发射带的能量,强度和线宽与温度的关系确定了激子的热电离过程和热激活的非辐射复合的热效应。室温下的非共振拉曼散射光谱通过He-Ne激光(波长约632.8 nm)激发。 ZnO纳米棒中完美的纤锌矿结构已通过包括低频和高频振动在内的强E_2模式进行了验证。通过共振拉曼散射光谱研究了室温下红移和振动模态展宽的可能原因。拉曼位移和半高宽的功率相关性表明激光辐照对振动模式的影响。

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