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Thin films composed of Ag nanoclusters dispersed in TiO2: Influence of composition and thermal annealing on the microstructure and physical responses

机译:由分散在TiO2中的Ag纳米团簇组成的薄膜:组成和热退火对微观结构和物理响应的影响

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摘要

Noble metal powders containing gold and silver have been used for many centuries, providing different colours in the windows of the medieval cathedrals and in ancient Roman glasses. Nowadays, the interest in nanocomposite materials containing noble nanoparticles embedded in dielectric matrices is related with their potential use for a wide range of advanced technological applications. They have been proposed for environmental and biological sensing, tailoring colour of functional coatings, or for surface enhanced Raman spectroscopy. Most of these applications rely on the so-called localised surface plasmon resonance absorption, which is governed by the type of the noble metal nanoparticles, their distribution, size and shape and as well as of the dielectric characteristics of the host matrix. The aim of this work is to study the influence of the composition and thermal annealing on the morphological and structural changes of thin films composed of Ag metal clusters embedded in a dielectric TiO2 matrix. Since changes in size, shape and distribution of the clusters are fundamental parameters for tailoring the properties of plasmonic materials, a set of films with different Ag concentrations was prepared. The optical properties and the thermal behaviour of the films were correlated with the structural and morphological changes promoted by annealing. The films were deposited by DC magnetron sputtering and in order to promote the clustering of the Ag nanoparticles the as-deposited samples were subjected to an in-air annealing protocol. It was demonstrated that the clustering of metallic Ag affects the optical response spectrum and the thermal behaviour of the films.
机译:包含金和银的贵金属粉末已经使用了多个世纪,在中世纪大教堂的窗户和古罗马玻璃中提供了不同的颜色。如今,人们对包含嵌入电介质基质中的贵金属纳米颗粒的纳米复合材料的兴趣与其在各种先进技术应用中的潜在用途有关。已经提出将它们用于环境和生物传感,定制功能涂层的颜色或用于表面增强拉曼光谱。这些应用中的大多数依赖于所谓的局部表面等离子体共振吸收,这受贵金属纳米颗粒的类型,它们的分布,大小和形状以及基质的介电特性支配。这项工作的目的是研究组成和热退火对嵌入介电TiO2基体中的由Ag金属簇组成的薄膜的形态和结构变化的影响。由于簇的尺寸,形状和分布的变化是调整等离激元材料性能的基本参数,因此制备了一组具有不同Ag浓度的薄膜。薄膜的光学性质和热行为与退火促进的结构和形态变化有关。通过DC磁控溅射沉积膜,并且为了促进Ag纳米颗粒的聚集,对沉积的样品进行空气退火方案。结果表明,金属银的团聚影响光学响应光谱和薄膜的热行为。

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