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The effect of size and size distribution on the oxidation kinetics and plasmonics of nanoscale Ag particles

机译:尺寸和尺寸分布对纳米银颗粒氧化动力学和等离激元的影响

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摘要

We employed a simple and effective electroless (EL) plating approach to produce silver nanoparticles (NPs) on bare silicon, on dielectric ZnO nanowires (NWs) and on Si NWs, respectively. The surface stability of the homogeneous Ag NPs formed on the ZnO NW surfaces was investigated by surface enhanced Raman spectroscopy (SERS), which show that the attachment of thiol to the Ag surface can slow down the oxidation process, and the SERS signal remains strong for more than ten days. To further examine the Ag NP oxidation process in air, the oxygen content in the silicon nanowire core/Ag sheath composites was monitored by the energy dispersive x-ray (EDX) method. The amount of oxygen in the system increases with time, indicating the silver NPs were continuously oxidized, and it is not clear if saturation is reached in this time period. To investigate the influence of the Ag NPs size distribution on the oxidation process, the oxygen amount in the NPs formed by EL deposition and e-beam (EB) evaporation on a bare silicon surface was compared. Results indicate a faster oxidation process in the EL formed Ag NPs than those produced by EB evaporation. We attribute this observation to the small diameter of the EL produced silver particles, which results in a higher surface energy.
机译:我们采用一种简单有效的化学镀(EL)方法,分别在裸露的硅,介电的ZnO纳米线(NWs)和Si的NW上生产银纳米颗粒(NPs)。通过表面增强拉曼光谱(SERS)研究了在ZnO NW表面形成的均匀Ag NPs的表面稳定性,表明硫醇与Ag表面的结合可以减慢氧化过程,并且SERS信号对于十多天。为了进一步检查空气中的Ag NP氧化过程,通过能量色散X射线(EDX)方法监测了硅纳米线芯/ Ag皮复合材料中的氧含量。系统中的氧气量随时间增加,表明银NP被连续氧化,尚不清楚在此时间段内是否达到饱和。为了研究Ag NPs尺寸分布对氧化过程的影响,比较了在裸露的硅表面上通过EL沉积和电子束(EB)蒸发形成的NPs中的氧含量。结果表明,EL形成的Ag NP中的氧化过程比EB蒸发产生的过程更快。我们将此观察结果归因于EL产生的银颗粒的小直径,这导致更高的表面能。

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