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Diffusion behavior of transition metals in field-assisted ion-exchanged glasses

机译:过渡金属离子交换玻璃中过渡金属的扩散行为

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摘要

The use of ion-exchange techniques for doping silicate glasses with transition metals has attracted much attention in the last decades for its potential in several applications, namely, light waveguides technology, luminescent materials, and for the possibility to realize systems in which metal nanocluster formation is controlled by suitable post-exchange techniques. In this framework, the control of metal distribution inside the glass is a central issue for both the understanding of the incorporation process and for the definition of effective preparation protocols. In this experiment, metallic films (Ag, Cu, Au, Co) were deposited onto the substrates by the rf-sputtering technique. Metal ions then penetrate to substitute glass alkali by means of field-assisted ion-exchange, realized at different temperature and electric field values. In particular, we present in this paper the Au doping of silicate glasses, successfully realized for the first time with this method. The gold diffusion profiles, as measured by Secondary Ion Mass Spectrometry (SIMS), indicate that the migration depends on the experimental parameters (temperature and electric field), but also on the local structure, as well as on chemical phenomena occurring at the metal/glass interface.
机译:在过去的几十年中,使用离子交换技术将硅酸盐玻璃掺入过渡金属引起了人们的广泛关注,因为它在光波导技术,发光材料等多种应用中具有潜力,并且有可能实现形成金属纳米团簇的系统由适当的交易后技术控制。在此框架中,控制玻璃内部金属的分布对于理解掺入过程和定义有效的制备规程都是一个中心问题。在该实验中,通过射频溅射技术将金属膜(Ag,Cu,Au,Co)沉积到基板上。然后,金属离子通过在不同温度和电场值下实现的场辅助离子交换渗透并取代玻璃碱。特别是,我们在本文中介绍了用这种方法首次成功实现的硅酸盐玻璃的金掺杂。通过二次离子质谱(SIMS)测量的金扩散曲线表明,迁移取决于实验参数(温度和电场),还取决于局部结构以及金属/金属上发生的化学现象玻璃界面。

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