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Synthesis of CuO Nanocomposites with Various Morphologies via Pulsed Wire Explosion

机译:通过脉冲线爆炸合成具有各种形态的CuO纳米复合材料

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Cu oxides are widely used in various aspects of electronic applications such as superconductor, gas sensor, ferroelectricity and magnetism. In this paper we report a novel method for energy efficient and eco friendly synthesis of CuO nanocomposites with various physical structures and chemical nature. The nanocomposites were produced by pulsed wire explosion in deionized water at 1°C, 10°C, 15°C, 25 °C, 35°C, 45°C, 55°C and 60°C. CuO nanocomposites with different morphology were obtained by simply varying the exploding medium temperature. Needlelike CuO nanocrystals were successfully synthesized in deionized water at 60°C. The spherical nanoparticles were highly dispersed with an average size of 20nm while the needle-like nanocrystals were average 70nm in width and 650nm in length. Optical and electronic properties of the needle-like nanostructure were analyzed. The nanocrystals showed p-type semiconductor characteristics. This will enable cost effective large scale synthesis of CuO nanocomposites for various nanoelectronic applications.
机译:Cu氧化物广泛用于电子应用的各个方面,例如超导体,气体传感器,铁电和磁性。在本文中,我们报告了一种具有各种物理结构和化学性质的CuO纳米复合材料的节能和生态友好合成的新方法。纳米复合材料通过在1℃,10℃,15℃,25℃,35℃,45℃,55℃和60℃下在去离子水中的脉冲线爆炸生产。通过简单地改变爆炸介质温度获得具有不同形态的CuO纳米复合材料。在60℃下,在去离子水中成功地合成了针状CuO纳米晶。球形纳米颗粒高度分散,平均尺寸为20nm,而针状纳米晶体的平均宽度为70nm,长度为650nm。分析了针状纳米结构的光学和电子性质。纳米晶体显示P型半导体特性。这将使CuO纳米复合材料具有成本有效的大规模合成,用于各种纳米电子应用。

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