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Facile synthesis of pentacle gold–copper alloy nanocrystals and their plasmonic and catalytic properties

机译:五角金铜合金纳米晶体的简便合成及其等离子体和催化性能

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摘要

The combination of gold and copper is a good way to pull down the cost of gold and ameliorate the instability of copper. Through shape control, the synergy of these two metals can be better exploited. Here, we report an aqueous phase route to the synthesis of pentacle gold–copper alloy nanocrystals with fivefold twinning, the size of which can be tuned in the range from 45 to 200 nm. The growth is found to start from a decahedral core, followed by protrusion of branches along twinning planes. Pentacle products display strong localized surface plasmon resonance peaks in the near-infrared region. Under irradiation by an 808-nm laser, 70-nm pentacle nanocrystals exhibit a notable photothermal effect to kill 4T1 murine breast tumours established on BALB/c mice. In addition, 70-nm pentacle nanocrystals show better catalytic activity than conventional citrate-coated 5-nm Au nanoparticles towards the reduction of p-nitrophenol to p-aminophenol by sodium borohydride.
机译:金和铜的组合是降低金成本和减轻铜不稳定的好方法。通过形状控制,可以更好地利用这两种金属的协同作用。在这里,我们报告了一种具有五重孪晶的五相金铜合金纳米晶体合成的水相路线,其大小可在45至200nm范围内调整。发现生长开始于十面体核心,然后沿孪生平面伸出分支。五角星产品在近红外区域显示强烈的局部表面等离子体共振峰。在808-nm激光照射下,70-nm五角形纳米晶体表现出显着的光热效应,可以杀死BALB / c小鼠身上建立的4T1鼠乳腺肿瘤。另外,对于由硼氢化钠将对硝基苯酚还原为对氨基苯酚,70nm的五角形纳米晶体显示出比常规的柠檬酸盐涂覆的5nm Au纳米颗粒更好的催化活性。

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