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Synthesis and Characterization of CuO/WO_3 Nanocomposite using Hybrid Method: Simple Precipitation and Pulsed Laser Ablation in Liquids Technique

机译:用杂合法的CuO / WO_3纳米复合材料的合成与表征:液体技术简单沉淀和脉冲激光烧蚀

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Nanomaterials have attracted much attention as class of materials for scientific research and technological applications due to their novel properties compared to bulk materials. The structural and efficacy of nano-materials depend strongly on the method applied for their synthesis. In this work, Copper (II) oxide and tungsten trioxide nanocomposite was successfully synthesized using hybrid method (Simple precipitation method followed by Pulsed Laser Ablation in Liquids Technique). Nanocrystalline copper (II) oxide and tungsten trioxide powders were synthesized by a simple chemical precipitation method wherein copper (II) nitrate and sodium tungstate precursors were used. Then, the synthesized CuO and WO_3 were used to synthesize CuO/WO_3 nanocomposite by pulsed laser ablation in deionized water. In the technique, a Q-switched, 532 nm Nd: YAG laser with output energy of 30 mJ, was used as a light source. The band gap energy of pure WO_3 nanoparticles was estimated to be 2.7 eV. It is proven that the addition of CuO to pure WO_3 improves the absorption in the visible range and reduces the bandgap energy as the amount of CuO increases. SEM images revealed a natural tendency of the particles to form agglomerates with irregular morphology. Moreover, the morphology and the structure were investigated and confirmed using TEM analysis.
机译:由于与散装材料相比,纳米材料由于其新颖性质而吸引了诸如科学研究和技术应用的材料的材料。纳米材料的结构和功效依赖于施用于其合成的方法。在这项工作中,使用杂化方法(简单的沉淀法在液体技术中脉冲激光烧蚀后,用杂种方法合成铜(II)氧化铜和氧化钨纳米复合材料。通过简单的化学沉淀方法合成纳米晶铜(II)氧化物和氧化钨粉末,其中使用铜(II)硝酸铜和钨酸钠前体。然后,使用合成的CuO和WO_3通过去离子水中的脉冲激光烧蚀合成CuO / WO_3纳米复合材料。在该技术中,用输出能量为30mJ的Q开关,532nm Nd:YAG激光器作为光源。纯WO_3纳米颗粒的带间隙能量估计为2.7eV。据证明,CuO与纯WO_3的加入改善了可见范围内的吸收,并随着CUO的增加而降低了带隙能量。 SEM图像揭示了颗粒的自然趋势,以形成具有不规则形态的附聚物。此外,使用TEM分析研究和确认形态和结构。

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