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Sonoelectrosynthesis of monodisperse metal nanoparticles

机译:Sonoelectrosynthesis单分散金属纳米粒子

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摘要

Traditional colloidal syntheses of metal nanoparticles (NPs) are highly sensitive to the selection of and quality of chemical reducing agents and metal precursors. To address these challenges, we demonstrate the complete sonoelectrochemical synthesis of monodisperse metal NPs starting from bulk metal, using Cu as a model system. Electrochemical syntheses of NPs are of great interest as the oxidation and reduction processes that account for product formation can occur directly at the anode and cathode, respectively. This ability has the potential to improve reproducibility by simplifying the chemical pathway to NPs, with electrosyntheses often also providing unique kinetic pathways toward green product formation. Herein, ultrasound is coupled with electrosynthesis to clean the electrode surface, dispersing the NPs produced at the electrode into solution. We were able to shift the size distribution to form monodispersed metal NPs through control of applied potential (Vapplied) and ultrasonic pulses. The synthesis begins with electrooxidation of bulk Cu metal to directly dissolve metal ions into a microemulsion system. This step is followed by sonoelectroreduction of the ions, which facilitates the formation of dispersible, monodisperse Cu NPs with diameters <10 nm. The size distribution can be controlled by adjusting the Vapplied, pulse intensity, and pulse sequence implemented during sonoelectroreduction. We view this technique as a scalable method to synthesize metal NPs from bulk metal without chemical reducing agents.
机译:传统的金属胶体合成纳米颗粒(NPs)高度敏感的选择和化学质量降低代理和金属前体。挑战,我们将演示完成sonoelectrochemical合成单分散金属NPs从大量金属,使用铜作为模型系统。极大的兴趣的氧化和吗减少过程占产品可以直接在阳极发生和形成分别阴极。可能提高再现性NPs,简化化学途径electrosyntheses也经常提供独一无二的动力学途径对绿色产品的形成。在此,超声波是加上电合成清洁电极表面,分散的NPs产生电极解决方案。分布,形成单分散的金属NPs通过控制应用的潜力(Vapplied)和超声波脉冲。摘要直接散装铜金属溶解金属离子成微乳液体系。这一步是sonoelectroreduction紧随其后促进形成的离子分散、单分散的铜NPs直径< 10纳米。通过调整Vapplied、脉冲强度和脉冲序列期间实施sonoelectroreduction。可伸缩的方法来合成金属NPs散装金属没有化学还原剂。

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