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Structural and optical properties of Cu:silica nanocomposite films prepared by co-sputtering deposition

机译:共溅射沉积制备Cu:二氧化硅纳米复合薄膜的结构和光学性质

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Copper-containing silica films were synthesized by radiofrequency (rf) co-sputtering deposition technique, and then heat-treated in different annealing atmospheres, i.e. either oxidizing or reducing, with the aim to develop suitable preparation methodologies for controlling the composite structure. Characterization of the samples along the various preparation steps was performed by Rutherford backscattering spectrometry (RBS), transmission electron microscopy and optical absorption spectroscopy. The nonlinear optical coefficient n_2 of the nanocomposite films was estimated by the Z-scan technique. Experimental observations showed that copper migration and aggregation depend critically on the annealing conditions, giving rise to quite different stable structures. In particular, for samples heat-treated first in air and then in a H_2-Ar gas mixture, the oxidizing atmosphere drives copper towards the surface while the reducing one promotes the subsequent clusterization in a well defined region.
机译:通过射频(rf)共溅射沉积技术合成含铜的二氧化硅膜,然后在不同的退火气氛中进行热处理,即氧化或还原,以开发用于控制复合结构的合适制备方法。通过卢瑟福背散射光谱(RBS),透射电子显微镜和光学吸收光谱对样品在各个制备步骤中的表征。纳米复合膜的非线性光学系数n_2是通过Z扫描技术估算的。实验观察表明,铜的迁移和聚集主要取决于退火条件,从而产生了完全不同的稳定结构。特别是,对于首先在空气中然后在H_2-Ar气体混合物中进行了热处理的样品,氧化性气氛将铜驱向表面,而还原剂则促进了随后在明确区域内的聚集。

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