Department of Mechanical and Automotive Engineering , Seoul National University of Science and Technology , Seoul 01811 , Korea.
Department of Mechanical Engineering , Hanbat National University , Daejeon 34158 , Korea.
ACS Appl Mater Interfaces. 2019 Mar 27;11(12):12070-12076. doi: 10.1021/acsami.8b21915. Epub 2019 Mar 18.
We develop a facile route to the scalable fabrication of flexible reattachable ionomer nanopatterns (RAINs) by continuous nanoinscribing and low-temperature roll imprinting, which are repeatedly attachable to and detachable from arbitrarily shaped surfaces. First, by sequentially performing continuous nanoinscribing over a polymer substrate along the multiple directions, we readily create the multidimensional nanopattern, which otherwise demands complex nanofabrication. After its transfer to an elastomer pad for use as a soft nanoimprinting stamp, we then conduct a low-temperature roll imprinting of the ionomer film to fabricate a flexible and highly transparent RAIN. Reversible loosening of ionic units in the ionomer material at the mild temperature as low as ∼60-70 °C enables the faithful nanopatterning over thermosensitive organic compounds and fragile materials under a slight pressure. The excellent adhesion purely emerging from ionic interactions uniquely realizes the conformal attachability and clean detachability of RAINs for universal targets in ambient conditions, particularly beneficial for individual wearable and mobile devices requiring the user-specific "on/off" of the nanopattern-driven functionalities. As one vivid example, we demonstrate that a single light-emitting device can be switched from the focused pointer to the widespread flashlight depending on the RAIN application upon user's purpose.
我们开发了一种简便的方法,可通过连续纳米刻蚀和低温滚压印来大规模制造可重复附着和拆卸的柔性可再附着离聚物纳米图案(RAIN),这些图案可附着和拆卸到任意形状的表面。首先,我们沿多个方向在聚合物基底上连续进行纳米刻蚀,从而轻松地创建多维纳米图案,而这在其他情况下需要复杂的纳米制造工艺。然后,我们将其转移到弹性体垫上,用作软纳米压印模具,再对离聚物膜进行低温滚压印,以制造出柔性且高透明的 RAIN。在低至约 60-70°C 的温和温度下,离聚物材料中离子单元的可逆松弛使得能够在热敏有机化合物和易碎材料上进行忠实的纳米图案化,只需施加轻微的压力。独特的纯离子相互作用产生的优异附着力实现了 RAIN 对环境条件下通用目标的贴合附着和干净拆卸能力,这对需要用户特定的“开启/关闭”纳米图案驱动功能的个人可穿戴和移动设备特别有利。作为一个生动的例子,我们展示了单个发光器件可以根据 RAIN 的应用,根据用户的目的从聚焦指针切换为广泛的手电筒。