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Kinetic pathways of diffusion and solid-state reactions in nanostructured thin films

机译:纳米结构薄膜中扩散和固相反应的动力学途径

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Mass transport and solid-state reactions in nanocrystalline thin films are reviewed. It is illustrated that diffusion along different grain boundaries (GBs) can have important effects on the overall intermixing process between two pure films. These processes can be well characterized by a bimodal GB network, with different (fast and slow) diffusivities. First the atoms migrate along fast GBs and accumulate at the film surface. These accumulated atoms form a secondary diffusion source for back diffusion along slow boundaries. Thus the different GBs of the thin films can be gradually filled up with the diffusing atoms and composition depth profiles reflect the result of these processes. Similar processes can be observed in binary systems with intermetallic layers: instead of nucleation and growth of the reaction layer at the initial interface, the reaction takes place in the GBs and the amount of the product phase grows by the motion of its interfaces perpendicular to the GBs. Thus, the entire layer of the pure parent films can be consumed by this GB diffusion-induced solid-state reaction (GBDIREAC), and a fully homogeneous product layer can be obtained.
机译:纳米晶体薄膜中的传质和固态反应进行了审查。结果表明,沿不同晶界(GBs)的扩散可能会对两个纯膜之间的整体混合过程产生重要影响。这些过程可以通过具有不同(快速和缓慢)扩散率的双峰GB网络来很好地表征。首先,原子沿着快速GB迁移并聚集在薄膜表面。这些累积的原子形成次级扩散源,用于沿缓慢边界向后扩散。因此,薄膜的不同GB可以逐渐被扩散原子填充,并且组成深度分布反映了这些过程的结果。在具有金属间层的二元体系中可以观察到类似的过程:代替在初始界面处成核和反应层的生长,反应发生在GBs中,并且产物相的数量通过其界面垂直于金属的运动而增长。 GBs。因此,该GB扩散诱导的固态反应(GBDIREAC)可以消耗纯母膜的整个层,并且可以获得完全均匀的产物层。

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