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Electric field induced microstructures in thin films on physicochemically heterogeneous and patterned substrates

机译:电场诱导的物化和图案化基质薄膜上的微观结构

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We study by nonlinear simulations the electric field induced pattern formation in a thin viscous film resting on a topographically or chemically patterned substrate. The thin film microstructures can be aligned to the substrate patterns within a window of parameters where the spinodal length scale of the field induced instability is close to the substrate periodicity. We investigate systematically the change in the film morphology and order when (i) the substrate pattern periodicity is varied at a constant film thickness and (ii) the film thickness is varied at a constant substrate periodicity. Simulations show two distinct pathway of evolution when the substrate-topography changes from protrusions to cavities. The isolated substrate defects generate locally ordered ripplelike structures distinct from the structures on a periodically patterned substrate. In the latter case, film morphology is governed by a competition between the pattern periodicity and the length scale of instability. Relating the thin film morphologies to the underlying substrate pattern has implications for field induced patterning and robustness of inter-interface pattern transfer, e.g., coding-decoding of information printed on a substrate.
机译:我们通过非线性模拟研究了电场诱导的图案形成,该图案形成在具有地形或化学图案的基材上的粘性薄膜中。薄膜微结构可在参数窗口内与衬底图案对准,在该窗口中,电场引起的不稳定性的旋节线长度尺度接近衬底周期性。当(i)以恒定的膜厚改变衬底图案周期性和(ii)以恒定的衬底周期性改变膜厚度时,我们系统地研究膜形态和顺序的变化。模拟显示了两种不同的演化路径,即衬底的形貌从突起变为腔时。隔离的衬底缺陷产生与周期性图案化的衬底上的结构不同的局部有序的波纹状结构。在后一种情况下,胶片的形态受图案周期和不稳定性长度尺度之间竞争的支配。将薄膜形态与下层衬底图案相关对场致图案化和界面间图案转移的鲁棒性具有影响,例如,对在衬底上印刷的信息进行编码-解码。

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