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Fabrication of gold dot, ring, and corpuscle arrays from block copolymer templates via a simple modification of surface energy

机译:制造的黄金点,戒指,和小体通过一个数组从嵌段共聚物模板表面能的简单修改

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摘要

We demonstrate a simple method for tuning the morphologies of as-spun micellar thin films by modifying the surface energy of silicon substrates. When a polystyrene-block-poly(2-vinylpyridine) (PS-b-P2VP) copolymer dissolved in o-xylene was spin-coated onto a PS-modified surface, a dimple-type structure consisting of a thick PS shell and P2VP core was obtained. Subsequently, when the films were immersed in metal precursor solutions at certain periods of time and followed by plasma treatment, metal individual dots in a ring-shaped structure, metal nanoring, and metal corpuscle arrays were fabricated, depending on the loading amount of metal precursors. in contrast, when PS-b-P2VP films cast onto silicon substrates with a native oxide were used as templates, only metal dotted arrays were obtained. The combination of micellar thin film and surface energy modification offers an effective way to fabricate various nanostructured metal or metal oxide films.
机译:我们将演示一个简单的调优方法形态的纺制胶束薄膜修改硅的表面能基板。polystyrene-block-poly (2-vinylpyridine)(PS-b-P2VP)共聚物溶解在邻二甲苯spin-coated PS-modified表面上dimple-type结构组成的厚PS壳牌和P2VP核心。当电影沉浸在金属前体在特定的时间和之后的解决方案通过等离子体处理、金属个人点环形结构,金属nanoring,金属小体阵列是伪造的,这取决于装运数量的金属前体。相反,当PS-b-P2VP电影投到上硅基质与本机氧化物被用作模板,只有金属点缀数组获得的。提供了一个和表面能修改有效的方法来制作各种纳米金属或金属氧化物薄膜。

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