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Enabling local deposition and controlled synthesis of Au-nanoparticles using a femtopipette

机译:使用飞脚尺实现金纳米颗粒的局部沉积和受控合成

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We demonstrate local synthesis and deposition of gold nanoparticles (AuNPs) using a femtopipette, which is a device similar to an atomic force microscope (AFM) sensor but featuring integrated fluidic channels. Two femtopipettes were used, one filled with chloroauric-acid (HAuCl4), and the second with sodium-azide (NaN3). We dispensed two equal droplets (HAuCl4 and NaN3) adjacent to each other, allowing them to coalesce and mix. In this manner, cross-contamination between the tips was prevented. The deposited volumes (per reagent) were 2.4fL, 1.2fL, 0.5fL and 0.25fL. Upon mixture, a chemical reduction process was triggered, which led to the local formation of AuNPs. The performed analysis indicate that the size of the nanoparticles is dominated by droplet volume. For the biggest droplet-mixture, the dominant particle size was 14nm. Whereas for the smallest droplets, the dominant particle size was 4nm. Similarly, the size distribution decreased with smaller droplet volumes. To the best of our knowledge, the combination of deposition and local chemistry using femtoliter-droplets, has not been reported before and represents a new level of compartmentalized nanoparticle synthesis and positioning.
机译:我们演示了使用飞轮尺的金纳米颗粒(AuNPs)的本地合成和沉积,该飞脚尺类似于原子力显微镜(AFM)传感器,但具有集成的流体通道。使用了两个飞脚,一个用氯金酸(HAuCl4)填充,第二个用叠氮化钠(NaN3)填充。我们分配了彼此相邻的两个相等的液滴(HAuCl4和NaN3),使它们聚结并混合。以这种方式,防止了尖端之间的交叉污染。沉积体积(每种试剂)分别为2.4fL,1.2fL,0.5fL和0.25fL。混合后,触发了化学还原过程,这导致了AuNPs的局部形成。进行的分析表明,纳米颗粒的大小主要由液滴体积决定。对于最大的液滴混合物,主要粒径为14nm。而对于最小的液滴,主要粒径为4nm。类似地,随着较小的液滴体积,尺寸分布减小。据我们所知,使用飞升液滴进行沉积和局部化学的结合以前尚未见过报道,代表了区室纳米颗粒合成和定位的新水平。

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