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Universal Interfacial Control through Polymeric Nanomosaic Coating for Block Copolymer Nanopatterning

机译:通过聚合物纳米型涂布嵌段共聚物涂层通用界面控制

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摘要

The employment of self-assembly of soft materials has been accepted as an inexpensive, robust, and reliable patterning method. As their self-assembly relies on the delicate molecular interactions near the substrate, a precise prediction/control of the interface structure and dynamics is critical to achieve desired nanostructures. Herein, a polymeric nano-mosaic (PNM) pattern is created from the air/water interfacial self-assembly of a block copolymer (BCP) and introduced as an effective interfacial energy control for substrates. As a demonstration, the PNM coating is employed to control the BCP film structures. The perpendicular orientation of BCP self-assembly, which requires neutral wetting conditions for both blocks, is difficult to achieve but can readily be obtained with the PNM coating upon a fine resolution of the pattern quality. The universal applicability of the PNM coating as an interfacial control has been confirmed on curved, flexible, and three-dimensional substrates. In addition, the PNM is introduced as an etching-free and reusable topcoat imparting free surface neutralization even for the high-chi BCP nanopatterning.
机译:软材料自组装的就业被认为是廉价,坚固且可靠的图案化方法。当它们的自组装依赖于基板附近的精细分子相互作用时,界面结构和动力学的精确预测/控制对于实现所需的纳米结构至关重要。这里,从嵌段共聚物(BCP)的空气/水界面自组装产生聚合物纳米叶片(PNM)图案,并作为基板的有效界面能量控制引入。作为示范,使用PNM涂层来控制BCP膜结构。 BCP自组装的垂直取向,其需要两个块的中性润湿条件,难以实现,但是在图案质量的精细分辨率下可以随着PNM涂层容易地获得。在弯曲,柔性和三维基板上证实了PNM涂层作为界面控制的通用适用性。此外,将PNM作为赋予自由表面中和的无蚀刻和可重复使用的面漆,即使对于高CHI BCP纳米透明机械而均匀。

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