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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Formation of self-organized nanoscale porous structures in anodic aluminum oxide
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Formation of self-organized nanoscale porous structures in anodic aluminum oxide

机译:阳极氧化铝中自组织纳米级多孔结构的形成

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A theory of the spontaneous formation of nanoscale porous structures in aluminum oxide films growing during aluminum anodization is presented. The main elements of this theory are the Butler-Volmer relation describing the exponential dependence of the current on the overpotential and the dependence of the activation energies of the oxide-electrolyte interfacial reactions on the Laplace pressure and the elastic stress in the oxide layer. Two cases are considered, distinguished by whether the elastic stress dependence is significant or not. In the case when the effect of elastic stress is negligible, a linear stability analysis predicts a long-wave instability resulting from the field-assisted dissolution reaction; its competition with the stabilizing effect of the Laplace pressure due to the surface energy provides the wavelength selection mechanism. A weakly nonlinear analysis near the instability threshold reveals that the nonlinear dynamics of the interface perturbations is governed by the Kuramoto-Sivashinsky equation. The spatiotemporally chaotic solutions of this equation can explain the formation of spatially irregular pore arrays that are observed in experiments. In the case when the effect of elastic stress in the oxide layer is significant we show that the instability can transform from the long-wave type to the short-wave type. A weakly nonlinear analysis of the short-wave instability shows that it leads to the growth of spatially regular, hexagonally ordered pore arrays, as observed experimentally.
机译:提出了在铝阳极氧化过程中生长的氧化铝膜中自发形成纳米级多孔结构的理论。该理论的主要元素是巴特勒-沃尔默关系,它描述了电流对超电势的指数依赖性,以及氧化物-电解质界面反应的活化能对拉普拉斯压力和氧化物层中弹性应力的依赖性。考虑两种情况,根据弹性应力依赖性是否显着来区分。如果弹性应力的影响可忽略不计,则线性稳定性分析预测,由场辅助的溶解反应会导致长波不稳定;由于表面能,它与拉普拉斯压力的稳定作用的竞争提供了波长选择机制。接近不稳定性阈值的弱非线性分析表明,界面扰动的非线性动力学受Kuramoto-Sivashinsky方程支配。该方程的时空混沌解可以解释在实验中观察到的空间不规则孔阵列的形成。在氧化物层中的弹性应力影响显着的情况下,我们表明不稳定性可以从长波型转变为短波型。对短波不稳定性的弱非线性分析表明,正如实验观察到的那样,它会导致空间规则的,六角形有序孔阵列的增长。

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