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Massively Parallel Patterning of Complex 2D and 3D Functional Polymer Brushes by Polymer Pen Lithography

机译:通过聚合物笔光刻技术对复杂的2D和3D功能性聚合物画笔进行大规模并行图案化

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摘要

We report the first demonstration of centimeter-area serial patterning of complex 2D and 3D functional polymer brushes by high-throughput polymer pen lithography. Arbitrary 2D and 3D structures of poly(glycidyl methacrylate) (PGMA) brushes are fabricated over areas as large as 2 cm × 1 cm, with a remarkable throughput being 3 orders of magnitudes higher than the state-of-the-arts. Patterned PGMA brushes are further employed as resist for fabricating Au microanostructures and hard molds for the subsequent replica molding of soft stamps. On the other hand, these 2D and 3D PGMA brushes are also utilized as robust and versatile platforms for the immobilization of bioactive molecules to form 2D and 3D patterned DNA oligonucleotide and protein chips. Therefore, this low-cost, yet high-throughput "bench-top" serial fabrication method can be readily applied to a wide range of fields including microanofabrication, optics and electronics, smart surfaces, and biorelated studies.
机译:我们报告了通过高通量聚合物笔光刻对复杂的2D和3D功能性聚合物刷进行的厘米区域串行图案化的首次演示。聚甲基丙烯酸缩水甘油酯(PGMA)刷子的任意2D和3D结构可在高达2 cm×1 cm的区域上制造,其吞吐能力比现有技术高3个数量级。图案化的PGMA刷进一步用作抗蚀剂,用于制造Au微/纳米结构和硬模,用于随后的软模复制模制。另一方面,这些2D和3D PGMA刷还用作固定生物活性分子以形成2D和3D图案化的DNA寡核苷酸和蛋白质芯片的强大而通用的平台。因此,这种低成本,高产量的“台式”串行制造方法可以很容易地应用于广泛的领域,包括微/纳米制造,光学和电子,智能表面和生物相关研究。

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