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Patterning fluid and elastomeric surfaces using short-wavelength UV radiation and photogenerated reactive oxygen species

机译:使用短波紫外线辐射和光生活性氧对液体和弹性体表面进行图案化

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摘要

Patterning physical, chemical, and biological functions at solid surfaces combines technological development with scientific discoveries in many disparate fields. A variety of top-down and bottom-up approaches has proved successful for applications in the solid state, affording large-area patterning at ever-shrinking length scales. Here we review a collection of recent efforts that highlight the versatility of short-wavelength ultraviolet light and photogenerated reactive oxygen species as a simple and cost-effective means to pattern a variety of challenging materials and thin-film configurations. In particular, we discuss two different classes of materials that present different challenges for patterning: fluid phospholipid bilayers at the buried solid-water interface and the surfaces of bulk elastomers. Despite the use of an identical patterning source, the generation and stabilization of patterns in these two classes of materials follow different mechanisms and produce different functionalities.
机译:在固体表面上对物理,化学和生物功能进行图案化将技术发展与许多不同领域的科学发现结合在一起。在固态应用中,已证明各种自上而下和自下而上的方法都是成功的,以不断缩小的长度比例提供大面积图案。在这里,我们回顾了一系列近期工作,这些工作着重强调了短波长紫外光和光生活性氧的多功能性,将其作为一种简单且具有成本效益的方式来图案化各种具有挑战性的材料和薄膜配置。特别是,我们讨论了两种不同类型的材料,这些材料对图案化提出了不同的挑战:在埋藏的固体-水界面和本体弹性体表面的流体磷脂双层。尽管使用了相同的图案来源,但这两类材料中图案的生成和稳定遵循不同的机制并产生不同的功能。

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