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Exploring the optical and morphological properties of ag and Ag/TiO2nanocomposites grown by supersonic cluster beam deposition

机译:探索超声簇束沉积生长的Ag和Ag / TiO2纳米复合材料的光学和形貌特性

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摘要

Nanocomposite systems and nanoparticle (NP) films are crucial for many applications and research fields. The structure-properties correlation raises complex questions due to the collective structure of these systems, often granular and porous, a crucial factor impacting their effectiveness and performance. In this framework, we investigate the optical and morphological properties of Ag nanoparticles (NPs) films and of Ag NPs/TiO2porous matrix films, one-step grown by supersonic cluster beam deposition. Morphology and structure of the Ag NPs film and of the Ag/TiO2(Ag/Ti 50-50) nanocomposite are related to the optical properties of the film employing spectroscopic ellipsometry (SE). We employ a simple Bruggeman effective medium approximation model, corrected by finite size effects of the nano-objects in the film structure to gather information on the structure and morphology of the nanocomposites, in particular porosity and average NPs size for the Ag/TiO2NP film. Our results suggest that SE is a simple, quick and effective method to measure porosity of nanoscale films and systems, where standard methods for measuring pore sizes might not be applicable.
机译:纳米复合材料系统和纳米颗粒(NP)膜对于许多应用和研究领域至关重要。由于这些系统的集体结构(通常是颗粒状和多孔性),结构属性相关性提出了复杂的问题,这是影响其有效性和性能的关键因素。在此框架中,我们研究了通过超声簇束沉积一步生长的Ag纳米颗粒(NPs)薄膜和Ag NPs / TiO2多孔基质薄膜的光学和形态学特性。 Ag NPs薄膜和Ag / TiO2(Ag / Ti 50-50)纳米复合材料的形态和结构与采用椭圆偏振光谱(SE)的薄膜的光学性能有关。我们采用简单的布鲁格曼有效介质近似模型,通过薄膜结构中纳米物体的有限尺寸效应进行校正,以收集有关纳米复合材料的结构和形态的信息,特别是Ag / TiO2NP薄膜的孔隙率和平均NPs尺寸。我们的结果表明,SE是一种测量纳米级薄膜和系统孔隙率的简单,快速且有效的方法,而标准的孔径测量方法可能不适用。

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