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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Preparation and Z-Scan nonlinear optical characterization of Au/SiO2- and Ag/SiO2-supported nanoparticles dispersed in silica sonogel films
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Preparation and Z-Scan nonlinear optical characterization of Au/SiO2- and Ag/SiO2-supported nanoparticles dispersed in silica sonogel films

机译:分散在二氧化硅声凝胶薄膜中的Au / SiO2-和Ag / SiO2负载纳米颗粒的制备及Z扫描非线性光学表征

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摘要

Au/SiO2 and Ag/SiO2 supported metal-nano-particles (MNPs) were implemented to fabricate SiO2-based inorganic-inorganic hybrid sonogel films. Prepared Au/SiO2- and Ag/SiO2-MNPs exhibited low 2D-HCP crystallinity with particle diameters below 10 nm and homogeneous size distribution. The catalyst-free (CF) sonogel route was successfully implemented to produce these optically active nanocomposite films by doping the liquid sol-phase with these MNP systems and its subsequent deposition onto glass substrates via standard spin-coating procedures. The easy MNP-loading within the mesoporous dielectric sonogel network evidenced a huge chemical affinity between the silica sonogel hosting system and the guest SiO2-supported MNPs. This fact allowed us to fabricate high quality hybrid films suitable for cubic nonlinear optical (NLO) characterizations via the Z-Scan technique. Indeed, the hosting sonogel network provided adequate thermal and mechanical stability protecting the active MNPs from environment conditions and diminished their tendency to aggregate; thus, preserving their pristine optical properties and morphology, giving rise to stable sol-gel hybrid films appropriate for photonic applications. Comprehensive morphological, structural, spectroscopic and nonlinear photophysical characterizations were optimally performed to the developed hybrid films. Our results have shown that the crystalline nature of the implemented MNPs, their small sizes and appropriate guest-host stabilizing interactions play a crucial role in the observation of improved cubic NLO-properties of these MNP structures embedded within the highly pure CF-sonogel confinement.
机译:实施Au / SiO2和Ag / SiO2负载的金属纳米粒子(MNPs)以制备SiO2基无机-无机杂化声凝胶薄膜。制备的Au / SiO2-和Ag / SiO2-MNPs的2D-HCP结晶度低,粒径低于10 nm,且粒度分布均匀。通过使用这些MNP系统掺杂液相溶胶相并随后通过标准旋涂程序将其随后沉积到玻璃上,成功实施了无催化剂(CF)声波凝胶路线来生产这些光学活性纳米复合膜。介孔介电声凝胶网络中的MNP易于装载,证明了二氧化硅声凝胶宿主系统与SiO2负载的MNPs之间具有巨大的化学亲和力。这一事实使我们能够通过Z-Scan技术制造适用于立方非线性光学(NLO)表征的高质量混合膜。实际上,宿主声凝胶网络提供了足够的热稳定性和机械稳定性,可保护活性MNP不受环境条件的影响,并减少了其聚集的趋势。因此,保留了它们原始的光学性质和形态,从而产生了适用于光子应用的稳定的溶胶-凝胶杂化膜。综合地形态,结构,光谱和非线性光物理特征是最佳地执行到开发的混合膜。我们的结果表明,实施的MNP的晶体性质,其小尺寸和适当的客体-主体稳定相互作用在观察嵌入在高纯CF-sonogel禁闭区中的这些MNP结构的立方NLO性能改善方面起着至关重要的作用。

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