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Efficient plasmonic scattering of colloidal silver particles through annealing-induced changes

机译:通过退火引起的变化有效胶体银粒子的等离子体扩散

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摘要

We present an experimental study on the influence of annealing temperature on morphological changes of colloidal silver nanoparticles (Ag NPs) and their optical response. Monodisperse colloidal Ag NPs with diameter of 164 nm± 15 nm have been fabricated by a facile two-step synthesis approach. The annealing effects on the Ag NPs have been investigated by means of optical measurements, scanning electron microscopy, x-ray photoelectron spectroscopy and x-ray diffraction. By annealing up to 440 °C morphology and chemical compositions of the Ag NPs changed. These changes affect the particle size and distribution, surface morphology, crystallinity and, most importantly, the oxidation state of the surface layer. The removal of an oxide layer leads to stronger light scattering from the nanoparticles and decreases parasitic light absorption at wavelengths above 400 nm. Strong light trapping has been observed for a silicon thin film with embedded annealed Ag NPs. This study demonstrates that colloidal Ag NPs for plasmonic solar cells need to be carefully processed and that they can potentially achieve high scatter efficiencies.
机译:我们目前进行的实验研究退火温度对胶态银纳米颗粒(Ag NPs)的形态变化及其光学响应的​​影响。通过一种简便的两步合成方法已经制备了直径为164 nm±15 nm的单分散Ag纳米胶体。已通过光学测量,扫描电子显微镜,X射线光电子能谱和X射线衍射研究了对Ag NP的退火作用。通过退火至440°C,Ag NP的形态和化学组成发生了变化。这些变化影响粒径和分布,表面形态,结晶度,最重要的是影响表面层的氧化态。去除氧化物层导致来自纳米颗粒的更强的光散射,并降低了在400 nm以上波长处的寄生光吸收。对于具有嵌入退火Ag NP的硅薄膜,已经观察到强光捕获。这项研究表明,用于等离子体太阳能电池的胶体Ag NPs需要仔细处理,并且它们有可能实现较高的散射效率。

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