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Shape control technology during electrochemical synthesis of gold nanoparticles

机译:金纳米粒子电化学合成过程中的形状控制技术

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摘要

Gold nanoparticles with different shapes and sizes were prepared by adding gold precursor (HAuCU) to an electrolyzed aqueous solution of poly(iV-vinylpyrrolidone) (PVP) and KNO3, which indicates the good reducing capacity of the PVP-containing solution after being treated by electrolysis. Using a catholyte and an anolyte as the reducing agents for HAuCL_4, respectively, most gold nanoparticles were spherical particles in the former case but plate-like particles in the latter case. The change in the pH value of electrolytes caused by the electrolysis of water would be the origin of the differences in shape and morphology of gold nanoparticles. A hypothesis of the H~+ or OH~ catalyzed PVP degradation mechanism was proposed to interpret why the pH value played a key role in determining the shape or morphology of gold nanoparticles. These experiments open up a new method for effectively controlling the shape and morphology of metal nanoparticles by using electrochemical methods.
机译:通过将金前驱体(HAuCU)添加到聚(iV-乙烯基吡咯烷酮)(PVP)和KNO3的电解水溶液中来制备具有不同形状和大小的金纳米颗粒,这表明经处理的含PVP溶液具有良好的还原能力电解。分别使用阴极电解液和阳极电解液作为HAuCL_4的还原剂,大多数金纳米颗粒在前者情况下为球形颗粒,而在后者情况下为板状颗粒。由水的电解引起的电解质的pH值变化将是金纳米颗粒的形状和形态差异的起源。提出了H〜+或OH〜催化的PVP降解机理的假设,以解释为什么pH值在决定金纳米颗粒的形状或形态中起关键作用。这些实验为通过电化学方法有效控制金属纳米颗粒的形状和形态开辟了一种新方法。

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