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首页> 外文期刊>ACS applied materials & interfaces >Highly Tunable Complementary Micro/Submicro-Nanopatterned Surfaces Combining Block Copolymer Self-Assembly and Colloidal Lithography
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Highly Tunable Complementary Micro/Submicro-Nanopatterned Surfaces Combining Block Copolymer Self-Assembly and Colloidal Lithography

机译:结合嵌段共聚物自组装和胶体平版印刷的高度可调互补微/亚微纳米图案表面

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摘要

Two kinds of large-area ordered and highly tunable micro/submicro-nanopatterned surfaces in a complementary manner were successfully fabricated by elaborately combining block copolymer self assembly and colloidal lithography. Employing a monolayer of polystyrene (PS) colloidal spheres assembled on top as etching mask, polystyrene-block-poly(4-vinylpyridine) (PS=b-P2VP) or polystyrene-block-poly(4-vinylpyridine) (PS-b-P4VP) micelle films were patterned into micro/submicro patches by plasma etching, which could be further transferred into micropatterned metal narroarrays by subsequent metal precursor loading and a second plasma etching. On the other hand, micro/submicro-nanopatterns in a complementary manner were generated via preloading a metal precursor in initial micelle films before the assembly of PS colloidal spheres on top. Both kinds of micro/submicro-nanopatterns showed good fidelity at the micro/submicroscale and nanoscale; meanwhile, they could be flexibly tuned by the sample and processing parameters. Significantly, when the PS colloidal sphere size was reduced to 250 nm, a high-resolution submicro-nanostructured surface with 3-5 metal nanoparticles in each. patch or a single-nanoparticle interconnected honeycomb network was achieved. Moreover, by applying gold (Au) nanopartides as anchoring points, micronanopatterned Au arrays can serve as a flexible template to pattern bovine serum albumin (BSA) molecules. This facile and cost-effective approach may provide a novel platform for fabrication of micropatterned nanoarrays tunability and controllability, which are promising in the applications of biological and microelectronic fields.
机译:通过将嵌段共聚物的自组装和胶体光刻技术完美地结合在一起,成功地以互补的方式制造了两种大面积有序且高度可调的微/亚微纳米图案表面。采用聚苯乙烯(PS)胶体球的单层作为蚀刻掩模,聚苯乙烯-嵌段-聚(4-乙烯基吡啶)(PS = b-P2VP)或聚苯乙烯-嵌段-聚(4-乙烯基吡啶)(PS-b-通过等离子刻蚀将P4VP)胶束膜构图为微/亚微贴片,然后通过后续的金属前体加载和第二次等离子刻蚀将其进一步转移到微图案化的金属阵列中。另一方面,在将PS胶体球组装在顶部之前,通过将金属前体预装在初始胶束薄膜中,以互补的方式产生了微/亚微纳米图案。两种微/亚微纳米图案在微/亚微尺度和纳米尺度上都表现出良好的保真度;同时,可以通过样本和处理参数灵活地对其进行调整。值得注意的是,当PS胶体球尺寸减小到250 nm时,高分辨率的亚微米纳米结构化表面各有3-5个金属纳米颗粒。补丁或单纳米粒子互连的蜂窝网络已实现。此外,通过应用金(Au)纳米粒子作为锚定点,微纳米金阵列可作为柔性模板来构图牛血清白蛋白(BSA)分子。这种简便且具有成本效益的方法可以为制造微图案化的纳米阵列的可调性和可控性提供一个新颖的平台,这在生物和微电子领域的应用中很有希望。

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