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Study Optical and Structure Properties of Nano ZnO/CU_2O Mixture Prepared by Pulsed Laser Deposition for Application

机译:脉冲激光沉积制备纳米ZnO / CU_2O混合物的光学和结构性质研究

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Nd:YAG laser was used at different number of shots (300, 500, and 700 pulse) to prepare ZnO:Cu_2O nanoparticles at mixing ratios of (0.5, 0.7 and 0.9). The optical, structural, morphological and electrical properties of the prepared films were investigated. The energy band gap was found to be (2.5,3.2 and 3.53 e.v). The crystalline structure showed no impurity peaks indicating that the final product was free from surface impurities. Also, the materials peaks and intensity is present and well identified as the mixing ratio varies. The AFM results for all ratios indicate that as the number of pulses increase, the higher the resulted grain size. The average grain size was between (58.82 nm) to (95.75nm). The J-V characteristics were measured for the prepared solar cells and it was found that the efficiency varied with the mixing ratio and film thickness from 0.29% to 2.38%. F.F varied from 0.28 to 0.25.
机译:使用Nd:YAG激光以不同的发射次数(300、500和700脉冲)制备ZnO:Cu_2O纳米粒子,混合比为(0.5、0.7和0.9)。研究了所制备薄膜的光学,结构,形态和电学性质。发现能带隙为(2.5、3.2和3.53e.v)。晶体结构没有杂质峰,表明最终产物没有表面杂质。而且,随着混合比的变化,存在材料的峰和强度并被很好地识别。所有比率的AFM结果表明,随着脉冲数的增加,所得到的晶粒尺寸也越大。平均晶粒尺寸在(58.82nm)至(95.75nm)之间。测量制备的太阳能电池的J-V特性,发现效率随混合比和膜厚度从0.29%至2.38%变化。 F.F从0.28到0.25不等。

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