Lensen Marga C, Mela Petra, Mourran Ahmed, Groll Jürgen, Heuts Jean, Rong Haitao, Möller Martin
DWI e.V. and Institute of Technical and Macromolecular Chemistry, RWTH Aachen, Pauwelsstrasse 8, D-52056 Aachen, Germany.
Langmuir. 2007 Jul 3;23(14):7841-6. doi: 10.1021/la7007683. Epub 2007 Jun 5.
A UV-based imprint lithography method is used for the direct surface structuring of hydrogel-based biomaterials, which are prepared from a family of tailor-made star poly(ethylene glycol) formulations. Bulk star poly(ethylene glycol) (PEG) hydrogels are fabricated by cross-linking acrylate-functionalized star PEG macromolecules. Cross-linking is achieved by radical reactions initiated by UV irradiation. This UV-curable star PEG formulation allows templating of mold structures to yield a stable, stand-alone, elastomeric replica of the mold. In particular, when a secondary, soft mold is used that consists of a perfluorinated elastomer with inherent excellent release properties, nanometer-sized features (down to 100 nm) can be imprinted without specialized equipment. The applied UV-based imprint lithography is a fast and simple technique to employ for the direct topographic structuring of bulk PEG-based biomaterials. The UV-based imprinting into the star PEG prepolymer by means of a perfluorinated, soft mold can be carried out on the bench top, while nanoscale resolution is demonstrated.
一种基于紫外线的压印光刻方法用于对水凝胶基生物材料进行直接表面结构化处理,这些材料由一系列定制的星形聚乙二醇配方制备而成。本体星形聚乙二醇(PEG)水凝胶通过丙烯酸酯官能化的星形PEG大分子交联制成。交联通过紫外线照射引发的自由基反应实现。这种可紫外线固化的星形PEG配方能够以模具结构为模板,生成稳定、独立的模具弹性复制品。特别是,当使用由具有固有优异脱模性能的全氟弹性体制成的二级软模具时,无需专门设备即可压印出纳米级特征(低至100纳米)。所应用的基于紫外线的压印光刻技术是一种快速且简单的技术,可用于对本体PEG基生物材料进行直接的形貌结构化处理。借助全氟软模具对星形PEG预聚物进行基于紫外线的压印可在实验台上进行,同时展示出了纳米级分辨率。