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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:通过简单修饰表面能,由嵌段共聚物模板制备金点,环和小体阵列

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:我们展示了一种通过修改硅衬底的表面能来调节初生胶束薄膜形态的简单方法。将溶解在邻二甲苯中的聚苯乙烯嵌段-聚(2-乙烯基吡啶)(PS-b-P2VP)共聚物旋涂到PS改性表面上时,由厚PS壳和P2VP核组成的酒窝型结构获得了。随后,当将膜在一定时间段内浸入金属前驱体溶液中,然后进行等离子体处理时,根据金属前驱体的负载量,可以制成环形结构的金属单个点,金属纳米环和金属微粒阵列。 。相反,当使用浇铸在具有天然氧化物的硅基板上的PS-b-P2VP膜作为模板时,仅获得金属点阵。胶束薄膜和表面能改性的结合提供了一种制造各种纳米结构金属或金属氧化物膜的有效方法。

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