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Optical transmission and photoluminescence studies of ZnO-MgO nanocomposite thin films

机译:ZnO-MgO纳米复合薄膜的光透射和光致发光研究

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摘要

ZnO nanoparticles were embedded in the MgO matrix by the sol-gel technique and were subsequently annealed in the temperature range of 573-873 K in air. The particle radii were around 2.0-3.0 nm at 573 K. The optical transmission spectra of the films recorded at room temperature indicated a blue shift (0.38-1.26 eV) depending on the annealing temperatures and the sizes of the embedded particles. The spectra showed a broadening effect (Urbach tail), indicating structural and temperature related disorders in the nanocrystals. The Urbach tail width decreased with increase in annealing temperatures depicting higher crystalline order. The room temperature photoluminescence spectra showed excitonic emissions of ZnO nanoparticles within 4.50-4.03 eV. The excitonic peak was red shifted with higher annealing temperature due to an increase in the particle size. Broad defect level related peaks were found around 2.19 and 2.03 eV.
机译:ZnO纳米粒子通过溶胶-凝胶技术嵌入MgO基质中,随后在空气中在573-873 K的温度范围内退火。在573 K下,粒子半径约为2.0-3.0 nm。在室温下记录的薄膜的光学透射光谱显示蓝移(0.38-1.26 eV),具体取决于退火温度和包埋粒子的尺寸。光谱显示出增宽作用(Urbach尾巴),表明纳米晶体中与结构和温度相关的紊乱。 Urbach尾部宽度随退火温度的升高而降低,这表明较高的晶序。室温光致发光光谱显示,ZnO纳米粒子的激子发射在4.50-4.03 eV之间。由于粒度增加,激子峰在较高的退火温度下发生红移。在2.19和2.03 eV附近发现了与缺陷水平相关的宽峰。

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