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The plasma-induced formation of silver nanocrystals in aqueous solution and their catalytic activity for oxygen reduction

机译:水溶液中银纳米晶体中的等离子体诱导的氧气减少催化活性形成

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Ag nanocrystals with different architectures are synthesized using a submerged plasma discharge without the involvement of any chemicals. The Ag architecture relies on the electron density in the plasma that could enable the Ag ions to be reduced instantaneously to generate a large number of small Ag nanoparticles. With a low electron density of 7.1. x. 10(-22) m(-3), the Ag nanowires with a corrugated structure induced by twinning and stacking faults are formed along the entire longitudinal 111 direction. However, with a high electron density 13.7. x. 10(-22) m(-3), the Ag nanodendrites are constructed with a defect-free structure. Due to the unique structure composed of twins and stacking faults, the Ag nanowires show a specific current density that is 2.7 times higher than the Ag nanodendrites towards the oxygen reduction reaction. This work not only suggests a synthetic route to the formation of nanowires with structural defects but also offers a rational design of electrocatalysts with enhanced catalytic activity.
机译:使用浸没式等离子体放电合成具有不同架构的Ag纳米晶体,而不会参与任何化学物质。 AG架构依赖于等离子体中的电子密度,其能够瞬间降低AG离子以产生大量小Ag纳米颗粒。低电子密度为7.1。 X。图10(-22)M(-3),沿着整个纵向且堆叠故障引起的具有波纹结构的Ag纳米线形成在整个纵向& 111&方向。然而,具有高电子密度13.7。 X。 10(-22)m(-3),Ag纳米二晶符由无缺陷结构构建。由于由双胞胎和堆叠故障组成的独特结构,Ag纳米线显示出​​比Ag纳秒朝向氧还原反应高2.7倍的特定电流密度。这项工作不仅提出了具有结构缺陷的纳米线形成的合成途径,还提供了具有增强催化活性的电催化剂的合理设计。

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