首页> 外文OA文献 >Fabrication of Nanostructured Polymer Surfaces and Characterization of their Wetting Properties:Enabling mass fabrication of superhydrophobic surfaces
【2h】

Fabrication of Nanostructured Polymer Surfaces and Characterization of their Wetting Properties:Enabling mass fabrication of superhydrophobic surfaces

机译:纳米结构聚合物表面的制备及其润湿性能的表征:能够大规模制造超疏水表面

摘要

In the past decade, there have been numerous examples of surfaces created with novel functionalities. These functional surfaces are predicted to have a massive impact on a range of commercial sectors within the next five years. Most realized functional surfaces rely on tailored micro- and nanoscale roughness, which cannot be produced with current mass fabrication technologies. The technology platform needed to create these surfaces has to be directly compatible with current mass production platforms, to commercially realize micro- and nanotextured surfaces. This comparability can be achieved by direct micro- and nanostructuring of commerical injection molding tools to create the desired surface structures directly in the molding process.The aim of this project was to enable the fabrication of surfaces with controlled wetting by injection molding.During the project, I have demonstrated improvements in many of the fields related to mass-fabrication of water repellent surfaces. Including:• Basic research in wetting phenomena; studying the role of multiple heights, irregular structures, and the transition to hierarchical structures.• Development of algorithms for improved contact angle fitting.• Simulations of wetting transitions.• Clean room fabrication of functional surfaces, and production of micro- and nanostructured mold inserts.• Injection molding of micro- and nanostructured polymer parts on a commercial injection molding machine.• Co-invented a patented technique for microstructuring steel molds able to produce superhydrophobic polymer parts.The patented microstructuring technique generates microstructures similar to those found on the leaf of the lotus flower, without the overlaying nanostructure. Despite the lack of hierarchical structures, the microstructured surface shows excellent water repellent properties. The demonstration of a single level, superhydrophobic, structure with low aspect ratio, served as inspiration for studies in the underlying wetting mechanisms. This resulted in two published studies. The first study concerns the differences between lattice based clean room structures and the irregular structures produced by the patented microstructuring technique. The second study bridges the gap between silicon structures produced by planar processes in the clean room and the smooth multi-height structures often found in nature.Finally i have demonstrated a novel type of hierarchical structures to get a better understanding of the role of hierarchy in wetting phenomena. I have produced and characterized hierarchical structures with the same surface coverage achieved in several different configurations. This leads to an interesting finding, not covered by modern wetting theories, where the local configuration of nanostructures governs the wetting behavior of the hierarchical structure.
机译:在过去的十年中,出现了许多具有新颖功能性的曲面示例。预计这些功能表面将在未来五年内对一系列商业领域产生巨大影响。大多数已实现的功能性表面依赖于定制的微米和纳米级粗糙度,而当前的批量生产技术无法生产这种粗糙度。创建这些表面所需的技术平台必须与当前的批量生产平台直接兼容,以商业化地实现微米级和纳米级纹理化表面。这种可比性可以通过直接对商用注射成型工具进行微观和纳米结构化,从而在成型过程中直接创建所需的表面结构来实现。该项目的目的是通过注射成型来制造具有受控润湿性的表面。 ,我已经证明了与疏水表面大规模制造相关的许多领域的改进。包括:•润湿现象的基础研究;研究多种高度,不规则结构以及过渡到分层结构的作用。•开发改进接触角拟合的算法。•润湿过渡的模拟。•功能表面的洁净室制造以及微结构和纳米结构模具嵌件的生产。•在商用注塑机上对微结构和纳米结构的聚合物零件进行注塑。•共同发明了一种专利技术,用于微结构化能够生产超疏水性聚合物零件的钢模。该专利的微结构技术产生的微结构类似于在叶片上发现的微结构。莲花,没有覆盖的纳米结构。尽管缺乏分层结构,但微结构化表面仍具有出色的拒水性能。具有低长宽比的单级超疏水结构的演示为基础润湿机理的研究提供了灵感。这导致了两项已发表的研究。第一项研究涉及基于晶格的洁净室结构与通过专利微结构技术产生的不规则结构之间的差异。第二项研究弥合了洁净室中由平面工艺产生的硅结构与自然界中常见的光滑多高度结构之间的鸿沟。最后,我展示了一种新型的层次结构,以更好地了解层次结构在半导体中的作用。润湿现象。我用几种不同的配置制作并表征了具有相同表面覆盖率的层次结构。这导致了一个有趣的发现,但未被现代润湿理论所覆盖,在该理论中,纳米结构的局部配置控制着分层结构的润湿行为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号