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Electrodeposition of metal-based nanocomposites at a liquid-liquid interface controlled via the interfacial Galvani potential difference

机译:通过界面Galvani电位差控制的液-液界面上的金属基纳米复合材料的电沉积

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摘要

This work presents a novel approach to the controlled electrodeposition of metal nanoparticles at a liquid-liquid interface. It has been shown that the size of gold nanoparticles co-deposited in a polymer matrix (nanocomposites) can be varied (indirectly) by modification of the Galvani potential difference established at the water-1,2-dichloroethane interface. Two electrochemical systems with different aqueous monomers, namely tyramine and resorcinol were studied. Various partitioning ions were used to set the Galvani potential difference resulting in the production of gold nanoparticles of different size parameters. The average particle size of the nanocomposites increases with increasing interfacial Galvani potential difference and the relationship between the Galvani potential difference and the size of prepared nanoparticles follows a similar trend for both of the studied systems in the covered potential range of approximately 600 mV. The synthesised nanocomposites were analysed using transmission electron microscopy.
机译:这项工作提出了一种新颖的方法来控制金属纳米颗粒在液-液界面处的电沉积。已经显示,可以通过改变在水-1,2-二氯乙烷界面处建立的Galvani电位差来(间接)改变共沉积在聚合物基质(纳米复合物)中的金纳米颗粒的尺寸。研究了两种不同含水单体的电化学体系,即酪胺和间苯二酚。使用各种分配离子来设定Galvani电位差,从而产生具有不同尺寸参数的金纳米粒子。纳米复合材料的平均粒径随界面Galvani电势差的增加而增加,并且对于两种研究的系统,在大约600 mV的覆盖电势范围内,Galvani电势差与制备的纳米颗粒尺寸之间的关系都遵循相似的趋势。使用透射电子显微镜分析合成的纳米复合材料。

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