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Hierarchically Ordered Nanopatterns for Spatial Control of Biomolecules

机译:用于生物分子空间控制的分层有序纳米模式。

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摘要

The development and study of a benchtop, high-throughput, and inexpensive fabrication strategy to obtain hierarchical patterns of biomolecules with sub-50 nm resolution is presented. A diblock copolymer of polystyrene-b-poly(ethylene oxide), PS-b-PEO, is synthesized with biotin capping the PEO block and 4-bromostyrene copolymerized within the polystyrene block at 5 wt %. These two handles allow thin films of the block copolymer to be postfunctionalized with biotinylated biomolecules of interest and to obtain micropatterns of nanoscale-ordered films via photolithography. The design of this single polymer further allows access to two distinct superficial nanopatterns (lines and dots), where the PEO cylinders are oriented parallel or perpendicular to the substrate. Moreover, we present a strategy to obtain hierarchical mixed morphologies: a thin-film coating of cylinders both parallel and perpendicular to the substrate can be obtained by tuning the solvent annealing and irradiation conditions.
机译:介绍了一种台式,高通量和廉价制造策略的开发和研究,该策略可获取分辨率低于50 nm的生物分子的分层模式。合成聚苯乙烯-b-聚(环氧乙烷)的二嵌段共聚物PS-b-PEO,其中生物素封端PEO嵌段和在聚苯乙烯嵌段内以5wt%共聚的4-溴苯乙烯。这两个手柄允许将嵌段共聚物的薄膜用感兴趣的生物素化生物分子进行后功能化,并通过光刻获得纳米级有序薄膜的微图案。这种单一聚合物的设计还允许访问两个不同的表面纳米图案(线和点),其中PEO圆柱体平行于或垂直于基材。此外,我们提出了一种获得分层混合形态的策略:可以通过调整溶剂退火和辐照条件来获得平行于和垂直于基材的圆柱体的薄膜涂层。

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