Single-Step Production of Nanostructured Copper-Nickel (CuNi) and Copper-Nickel-Indium (CuNiIn) Alloy Particles

被引:0
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作者
Ramazan Oğuzhan Apaydın
Burçak Ebin
Sebahattin Gürmen
机构
[1] Istanbul Technical University,Department of Metallurgical and Materials Engineering
[2] Chalmers University of Technology,Nuclear Chemistry and Industrial Material Recycling, Department of Chemistry and Chemical Engineering
[3] Nanokomp Advanced Materials Ltd. Co.,Department of Electrical Engineering, Semiconductor Components Group, Faculty of EEMCS
[4] University of Twente,undefined
关键词
CuNi; Alloy Particle; Nickel Nitrate; Copper Nitrate; Aerosol Droplet;
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学科分类号
摘要
Nanostructured copper-nickel (CuNi) and copper-nickel-indium (CuNiIn) alloy particles were produced from aqueous solutions of copper, nickel nitrates and indium sulfate by hydrogen reduction-assisted ultrasonic spray pyrolysis. The effects of reduction temperatures, at 973 K, 1073 K, and 1173 K (700 °C, 800 °C, and 900 °C), on the morphology and crystalline structure of the alloy particles were investigated under the conditions of 0.1 M total precursor concentration and 0.5 L/min H2 volumetric flow rate. X-ray diffraction studies were performed to investigate the crystalline structure. Particle size and morphology were investigated by scanning electron microscope and energy-dispersive spectroscopy was applied to determine the chemical composition of the particles. Spherical nanocrystalline binary CuNi alloy particles were prepared in the particle size range from 74 to 455 nm, while ternary CuNiIn alloy particles were obtained in the particle size range from 80 to 570 nm at different precursor solution concentrations and reduction temperatures. Theoretical and experimental chemical compositions of all the particles are nearly the same. Results reveal that the precursor solution and reduction temperature strongly influence the particle size of the produced alloy particles.
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页码:3744 / 3752
页数:8
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