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Optimal synthesis and characterization of Ag nanofluids by electrical explosion of wires in liquids

机译:液体中金属丝的电爆炸优化Ag纳米流体的合成与表征

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摘要

Silver nanoparticles were produced by electrical explosion of wires in liquids with no additive. In this study, we optimized the fabrication method and examined the effects of manufacturing process parameters. Morphology and size of the Ag nanoparticles were determined using transmission electron microscopy and field-emission scanning electron microscopy. Size and zeta potential were analyzed using dynamic light scattering. A response optimization technique showed that optimal conditions were achieved when capacitance was 30 mu F, wire length was 38 mm, liquid volume was 500 mL, and the liquid type was deionized water. The average Ag nanoparticle size in water was 118.9 nm and the zeta potential was -42.5 mV. The critical heat flux of the 0.001-vol.% Ag nanofluid was higher than pure water.
机译:银纳米粒子是通过在无添加剂的液体中对电线进行电爆炸而产生的。在这项研究中,我们优化了制造方法并检查了制造工艺参数的影响。使用透射电子显微镜和场发射扫描电子显微镜确定Ag纳米颗粒的形态和尺寸。使用动态光散射分析尺寸和ζ电位。响应优化技术表明,当电容为30μF,线长为38 mm,液体体积为500 mL,液体类型为去离子水时,可获得最佳条件。水中的平均Ag纳米颗粒尺寸为118.9 nm,ζ电位为-42.5 mV。 0.001%(体积)Ag纳米流体的临界热通量高于纯水。

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