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定制的纳米多孔涂层,制造于顺应性聚合物基底上。

Tailored nanoporous coatings fabricated on conformable polymer substrates.

机构信息

Rensselaer Nanotechnology Center, Rensselaer Polytechnic Institute, 110 Eighth Street, Troy, New York 12180, USA.

出版信息

ACS Appl Mater Interfaces. 2012 Nov;4(11):6295-301. doi: 10.1021/am301882m. Epub 2012 Nov 12.

Abstract

Nanoporous coatings have become the subject of intense investigation, in part because they have been shown to have unique and tailorable physical properties that can depart greatly from their dense or macroscopic counterparts. Nanoporous coatings are frequently fabricated utilizing oblique-angle or glancing-angle physical vapor-phase deposition techniques. However, a significant limitation for such coatings exists; they are almost always deposited on smooth and rigid planar substrates, such as silicon and glass. This limitation greatly constrains the applicability, tailorability, functionality and even the economic viability, of such nanoporous coatings. Here, we report our findings on nanoporous/polymer composite systems (NPCS) fabricated by utilizing oblique-angle electron-beam methodology. These unique composite systems exhibit several favorable characteristics, namely, (i) fine-tuned control over coating nanoporosity and thickness, (ii) excellent adhesion between the nanoporous coating and polymer substrate, (iii) the ability to withstand significant and repeated bending, and (iv) the ability to be molded conformably on two and three-dimensional surfaces while closely retaining the composite system's designed nanoporous film structure and, hence, properties.

摘要

纳米多孔涂层已经成为研究的热点,部分原因是它们具有独特且可定制的物理性质,与致密或宏观的对应物相比有很大的不同。纳米多孔涂层通常利用斜角或掠角物理气相沉积技术制造。然而,这种涂层存在一个显著的局限性;它们几乎总是沉积在光滑和刚性的平面基底上,如硅和玻璃。这种局限性极大地限制了这种纳米多孔涂层的适用性、可定制性、功能性甚至经济可行性。在这里,我们报告了利用斜角电子束方法制造纳米多孔/聚合物复合材料系统(NPCS)的研究结果。这些独特的复合材料系统具有几个有利的特点,即:(i)对涂层纳米多孔性和厚度的精细控制,(ii)纳米多孔涂层与聚合物基底之间的优异附着力,(iii)能够承受显著和反复的弯曲,以及(iv)能够在二维和三维表面上贴合成型,同时紧密保留复合材料系统的设计纳米多孔膜结构和特性。

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