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Dewetting of polymer films by ion implantation

机译:通过离子注入对聚合物膜进行去湿

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摘要

We report dewetting of thermodynamically stable, thick (~ 100 nm) polystyrene films by titanium ion implantation. The dynamic dewetting patterns in time evolution are recorded. The dewetting mechanism is determined to be heterogeneous nucleation, where the defects and Ti nanoparticles formed by ion implantation serve as the nuclei. In addition, we observe abundant rims with regular polygonal shapes in dewetting patterns. This is attributed to fingering instability, which results from the balance between the driving force arisen from thermally induced surface tension gradient and the resistive forces from the combination of friction force, Laplace pressure and long-range van der Waals interactions. Finally, a model based on mass conservation is used to qualitatively describe the transition from circular to polygonal shaped rims at a critical diameter for holes.
机译:我们报道了通过钛离子注入对热力学稳定的厚(〜100 nm)聚苯乙烯薄膜进行去湿。记录时间演化中的动态去湿模式。确定去湿机理是异质形核,其中通过离子注入形成的缺陷和Ti纳米粒子充当形核。此外,我们在去湿模式中观察到具有规则多边形形状的大量轮辋。这归因于指法不稳定性,指法不稳定性是由热诱导表面张力梯度产生的驱动力与摩擦力,拉普拉斯压力和范德华力远距离相互作用共同产生的阻力之间的平衡引起的。最后,使用基于质量守恒的模型定性描述孔的临界直径下从圆形边缘到多边形边缘的过渡。

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