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Spatially Periodic Formation of Nanoparticles in Metal-Doped Glasses

机译:金属掺杂玻璃中纳米粒子的空间周期性形成。

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摘要

In the course of reactive diffusion of hydrogen in metal-doped glasses, at some conditions, metallic nanoparticles grow forming quasi-periodic layered structure. We have developed a model defining conditions necessary for the formation of the layered structures. The model indicates relatively narrow range of parameters providing the quasi-periodic growth of the nanoparticles. The layered structure arises at relatively low over-saturation by neutral metal in the diffusion zone, due to the competition of two processes: enrichment of the glass by neutral metal atoms via reducing of metal ions by diffusing hydrogen and depletion of the glass by the metal atoms caused their diffusion to the nanoparticles. The model can be also applied to other situations where reactive diffusion inducing the formation and growth of nanoparticles occurs.
机译:在氢在金属掺杂的玻璃中的反应性扩散过程中,在某些条件下,金属纳米颗粒生长形成准周期的层状结构。我们已经开发了一个模型,该模型定义了形成分层结构所需的条件。该模型表明提供纳米粒子准周期性生长的参数范围相对狭窄。由于以下两个过程的竞争,层状结构在扩散区中被中性金属以相对较低的过饱和度产生:中性金属原子通过扩散氢原子还原金属离子而使玻璃富集,以及金属对玻璃的消耗原子导致其扩散到纳米粒子。该模型还可以应用于发生反应性扩散诱导纳米粒子形成和生长的其他情况。

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