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首页> 外文期刊>Journal of Materials Science >Effect of ultrasound radiation on the size and size distribution of synthesized copper particles
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Effect of ultrasound radiation on the size and size distribution of synthesized copper particles

机译:超声辐射对合成铜颗粒尺寸和尺寸分布的影响

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The effect of ultrasound radiation on the size and size distribution of synthesized copper particles was investigated under various concentrations of ethylene glycol (E.G.) as a capping agent. Monodispersed copper particles were produced by the reduction of an aqueous copper (II) sulfate solution at the presence of hydrazine monohydrate. X-ray diffraction and scanning electron microscopy analysis revealed that the morphology, size, and size distribution of produced particles were influenced by the reducing agent injection rate, capping agent concentration, and sonication. Increasing the injection rate of reducing agent to an amount higher than a critical value decreases the size of copper particles and also converts the monodispersed particles to polydispersed particles. Results of using a sonifier at the reduction stage revealed that finer monodispersed copper particles can be achieved at higher injection rates related to the critical value. Increasing the concentration of E.G. as a capping agent decreases the size of copper particles, while applying ultrasound radiation along with increasing the concentration of E.G. increases the size of copper particles. Morphology of particles varies by the concentration and type of the capping agent. Higher reducing agent injection rates and the application of a sonifier at the instance of reduction result in smaller spherical particles at various capping agent concentrations.
机译:在不同浓度的乙二醇(E.G.)作为封端剂的情况下,研究了超声辐射对合成铜颗粒的尺寸和尺寸分布的影响。通过在一水合肼存在下还原硫酸铜(II)水溶液来生产单分散的铜颗粒。 X射线衍射和扫描电子显微镜分析表明,所产生的颗粒的形态,尺寸和尺寸分布受还原剂注入速率,封端剂浓度和超声处理的影响。将还原剂的注入速率增加到高于临界值的量可以减小铜颗粒的尺寸,并且还可以将单分散的颗粒转化为多分散的颗粒。在还原阶段使用超声波发生器的结果表明,在与临界值相关的更高注入速率下,可以实现更细的单分散铜颗粒。增加E.G.的浓度作为封端剂,可减小铜颗粒的尺寸,同时施加超声波辐射并增加E.G.的浓度。增加了铜颗粒的尺寸。颗粒的形态随封端剂的浓度和类型而变化。较高的还原剂注入速率和在还原时使用超声波发生器会导致在各种封端剂浓度下产生较小的球形颗粒。

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