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Formation of metastable structures by phase separation triggered by initial composition gradients in thin films

机译:薄膜中初始成分梯度触发相分离形成亚稳结构

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Phase separation kinetics of a binary (A,B) mixture contained in a thin film of thickness D induced by a quench from the one-phase region into the miscibility gap is studied by simulations using a Cahn-Hilliard-Cook model. The initial randomly mixed state (50 A, 50 B) contains a concentration gradient perpendicular to the film, while the surfaces of the film are neutral (no preference for either A or B). In thermal equilibrium, a pattern of large A-rich and B-rich domains must result, separated by domain walls oriented perpendicularly to the external surfaces of the thin film. However, it is shown that for many choices of D and the strength of the initial gradient Ψ _g, instead a very long-lived metastable layered structure forms, with two domains separated by a single interface parallel to the external walls. The transient time evolution that leads to this structure is interpreted in terms of a competition between domain growth in the bulk and surface-directed spinodal decomposition caused by the gradient during the initial stages. A surprising and potentially useful finding is that a moderate concentration gradient perpendicular to the film does not favor the layered structure but facilitates the approach toward the true equilibrium with just two domain walls perpendicular to the film. This mechanism may have useful applications in producing layered materials.
机译:通过使用Cahn-Hilliard-Cook模型进行模拟研究,研究了由单相区淬灭引起的厚度为D的薄膜中包含的二元(A,B)混合物的相分离动力学。初始随机混合状态(50 A,50 B)包含一个垂直于薄膜的浓度梯度,而薄膜的表面是中性的(对A或B均无偏好)。在热平衡中,必须形成大的富A和富B畴的图案,并由垂直于薄膜外表面取向的畴壁隔开。然而,结果表明,对于D的许多选择和初始梯度的强度,都形成了非常长寿命的亚稳层状结构,其中两个畴由平行于外壁的单个界面分开。导致这种结构的瞬态时间演化是根据在初始阶段由梯度引起的整体中畴生长和表面定向旋节线分解之间的竞争来解释的。令人惊讶且可能有用的发现是垂直于膜的中等浓度梯度不利于层状结构,但仅在垂直于膜的两个畴壁的情况下有助于接近真实平衡。该机制在生产层状材料中可能有用。

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