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Influence of hydrofluoric acid treatment on electroless deposition of Au clusters

机译:氢氟酸处理对金团簇化学沉积的影响

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摘要

The morphology of gold nanoparticles (AuNPs) deposited on a (100) silicon wafer by simple immersion in a solution containing a metal salt and hydrofluoric acid (HF) is altered by HF treatment both before and after deposition. The gold clusters are characterized by the presence of flat regions and quasispherical particles consistent with the layer-by-layer or island growth modes, respectively. The cleaning procedure, including HF immersion prior to deposition, affects the predominantly occurring gold structures. Flat regions, which are of a few tens of nanometers long, are present after immersion for 10 s. The three-dimensional (3D) clusters are formed after a cleaning procedure of 4 min, which results in a large amount of spherical particles with a diameter of ≈15 nm and in a small percentage of residual square layers of a few nanometers in length. The samples were also treated with HF after the deposition and we found out a general thickening of flat regions, as revealed by TEM and AFM analysis. This result is in contrast to the coalescence observed in similar experiments performed with Ag. It is suggested that the HF dissolves the silicon oxide layer formed on top of the thin flat clusters and promotes the partial atomic rearrangement of the layered gold atoms, driven by a reduction of the surface energy. The X-ray diffraction investigation indicated changes in the crystalline orientation of the flat regions, which partially lose their initially heteroepitaxial relationship with the substrate. A postdeposition HF treatment for almost 70 s has nearly the same effect of long duration, high temperature annealing. The process presented herein could be beneficial to change the spectral response of nanoparticle arrays and to improve the conversion efficiency of hybrid photovoltaic devices.
机译:通过简单地浸入包含金属盐和氢氟酸(HF)的溶液中而沉积在(100)硅晶片上的金纳米颗粒(AuNPs)的形态在沉积前后都通过HF处理得以改变。金团簇的特征在于分别存在与逐层或岛状生长模式一致的平坦区域和准球形颗粒。清洁程序(包括在沉积之前进行HF浸泡)会影响主要发生的金结构。浸入10 s后,会出现几十纳米长的平坦区域。三维(3D)簇是在4分钟的清洁程序后形成的,这将导致大量直径约为≈15 nm的球形颗粒和少量百分比的几纳米长的残留方形层。样品在沉积后也用HF处理,通过TEM和AFM分析发现,平坦区域普遍增厚。该结果与在用Ag进行的类似实验中观察到的聚结相反。建议HF溶解在薄的扁平簇团顶部形成的氧化硅层,并通过降低表面能来促进层状金原子的部分原子重排。 X射线衍射研究表明,平坦区域的晶体取向发生了变化,这部分失去了与基材的最初异质外延关系。沉积后HF处理约70 s具有与长时间高温退火几乎相同的效果。本文提出的方法可能有益于改变纳米颗粒阵列的光谱响应并改善混合光伏器件的转换效率。

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