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Diffusion of silver in silicate glass and clustering in hydrogen atmosphere

机译:银在硅酸盐玻璃中的混合和氢气氛中的聚类

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Annealing in a hydrogen atmosphere of silicate glass plates doped by Ag~+ ions leads to the reduction of silver to a metallic state (Ag~0) and to the formation of silver nanoclusters. The kinetics of clustering during hydrogen diffusion into the glass and diffusion of Ag~0 atoms in the glass matrix have been studied in a temperature ranging from 160 to 200°C by SEM, AFM and optical spectrometry. The absorption spectra have a peak near 410 nm corresponding to the surface plasmon resonance in Ag clusters. The position of the peak moves as the clusters grow. A theoretical analysis of the absorption spectra allowed us to estimate the cluster size as a function of time, as well as the thickness of the layer filled by clusters, which also changes with time. From AFM data we could measure the kinetics of cluster growth on the surface. We have theoretically analyzed the kinetics of cluster growth during reactive hydrogen diffusion, the kinetics of bulk cluster growth, surface cluster growth, and thickening of the layer filled by clusters.
机译:通过Ag〜+离子掺杂掺杂硅酸盐玻璃板的氢气氛的退火导致银至金属状态(Ag〜0)的氧化银并形成银纳米团簇的形成。通过SEM,AFM和光学光谱法测量在160至200℃的温度范围内,研究了氢气扩散到玻璃中的聚集过程中的动力学和Ag〜0原子的扩散。吸收光谱具有与Ag簇中的表面等离子体共振相对应的达到410nm的峰值。峰值随着簇的生长而移动的位置。吸收光谱的理论分析使我们估计作为时间的函数的簇尺寸,以及由簇填充的层的厚度,这也随时间变化。来自AFM数据,我们可以测量表面上集群增长的动力学。理论上,在反应性氢气扩散过程中,理论上分析了集群增长的动力学,散装簇生长,表面簇生长和由簇填充的层增厚的动力学。

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