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Facile synthesis of concentrated gold nanoparticles with low size-distribution in water: temperature and pH controls

机译:水中低尺寸分布的浓缩金纳米颗粒的简便合成:温度和pH值控制

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摘要

The citrate reduction method for the synthesis of gold nanoparticles (GNPs) has known advantages but usually provides the products with low nanoparticle concentration and limits its application. Herein, we report a facile method to synthesize GNPs from concentrated chloroauric acid (2.5 mM) via adding sodium hydroxide and controlling the temperature. It was found that adding a proper amount of sodium hydroxide can produce uniform concentrated GNPs with low size distribution; otherwise, the largely distributed nanoparticles or instable colloids were obtained. The low reaction temperature is helpful to control the nanoparticle formation rate, and uniform GNPs can be obtained in presence of optimized NaOH concentrations. The pH values of the obtained uniform GNPs were found to be very near to neutral, and the pH influence on the particle size distribution may reveal the different formation mechanism of GNPs at high or low pH condition. Moreover, this modified synthesis method can save more than 90% energy in the heating step. Such environmental-friendly synthesis method for gold nanoparticles may have a great potential in large-scale manufacturing for commercial and industrial demand.
机译:用于合成金纳米颗粒(GNP)的柠檬酸盐还原法具有已知的优点,但是通常提供具有低纳米颗粒浓度的产物并且限制了其应用。在这里,我们报告了一种简便的方法,可以通过添加氢氧化钠并控制温度,从浓氯金酸(2.5 mM)中合成GNP。结果发现,加入适量的氢氧化钠可以产生均匀的浓缩GNP,且粒径分布较小。否则,获得分布广泛的纳米颗粒或不稳定的胶体。低的反应温度有助于控制纳米颗粒的形成速率,并且在存在优化的NaOH浓度的情况下可以获得均匀的GNP。发现所获得的均匀GNP的pH值非常接近中性,并且pH对粒度分布的影响可能揭示了在高或低pH条件下GNP的不同形成机理。而且,这种改进的合成方法可以在加热步骤中节省90%以上的能量。这种用于金纳米颗粒的环境友好的合成方法在大规模生产中可以满足商业和工业需求。

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