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Metallic and nonmetallic shine in luster: An elastic ion backscattering study

机译:金属和非金属光泽:弹性离子反向散射研究

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摘要

Luster is a metal glass nanocomposite layer first produced in the Middle East in early Islamic times ( 9th AD) made of metal copper or silver nanoparticles embedded in a silica-based glassy matrix. These nanoparticles are produced by ion exchange between Cu+ and Ag+ and alkaline ions from the glassy matrix and further growth in a reducing atmosphere. The most striking property of luster is its capability of reflecting light like a continuous metal layer and it was unexpectedly found to be linked to one single production parameter: the presence of lead in the glassy matrix composition. The purpose of this article is to describe the characteristics and differences of the nanoparticle layers developed on lead rich and lead free glasses. Copper luster layers obtained using the ancient recipes and methods are analyzed by means of elastic ion backscattering spectroscopy associated with other analytical techniques. The depth profile of the different elements is determined, showing that the luster layer formed in lead rich glasses is 5–6 times thinner and 3–4 times Cu richer. Therefore, the metal nanoparticles are more densely packed in the layer and this fact is related to its higher reflectivity. It is shown that lead influences the structure of the metal nanoparticle layer through the change of the precipitation kinetics
机译:Lustre是一种金属玻璃纳米复合材料层,最早是在伊斯兰时代早期(公元9年)在中东生产的,该层由嵌入二氧化硅基玻璃状基质中的金属铜或银纳米颗粒制成。这些纳米粒子是通过Cu +和Ag +与来自玻璃状基质的碱性离子之间的离子交换并在还原性气氛中进一步生长而产生的。光泽最显着的特性是它能像连续的金属层一样反射光,出乎意料地发现它与一个单一的生产参数有关:玻璃状基质成分中存在铅。本文的目的是描述富铅和无铅玻璃上形成的纳米颗粒层的特性和差异。使用古老的配方和方法获得的铜光泽层通过与其他分析技术相关的弹性离子背散射光谱法进行分析。确定了不同元素的深度轮廓,表明在富铅玻璃中形成的光泽层薄了5–6倍,而铜丰富了3–4倍。因此,金属纳米颗粒更紧密地堆积在该层中,并且这一事实与其较高的反射率有关。结果表明,铅通过沉淀动力学的变化影响金属纳米颗粒层的结构。

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