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Using cylindrical domains of block copolymers to self-assemble and align metallic nanowires

机译:使用嵌段共聚物的圆柱域自组装和排列金属纳米线

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摘要

Block copolymer thin films can be used as soft templates for a wide range of surfaces where large area patterns of nanoscale features are desired. The cylindrical domains of add-sensitive, self-assembled monolayers of polystyrene-poly(2-vinylpyridine) block copolymers on silicon surfaces were utilized as structural elements for the production of parallel metal nanowires. Metal ion loading of the P2VP block with simple aqueous solutions of anionic metal complexes is accomplished via protonation of this basic block, rendering it cationic, electrostatic attraction leads to a high local concentration of metal complexes within the protonated P2VP domain. A subsequent brief plasma treatment simultaneously removes the polymer and produces metallic nanowires. The morphology of the patterns can modulated by controlling solution concentration, deposition time, and molecular weight of the block copolymers, as well as other factors. Horizontal metallic nanoarrays can be aligned on e-beam lithographically defined silicon substrates within different shapes, via graphoepitaxy. This method is highy versatile as the procedures to manipulate nanowire composition, dimension, spacing, and orientation are straightforward and based upon efficient aqueous inorganic chemistry.
机译:嵌段共聚物薄膜可用作需要大面积图案的纳米级特征的各种表面的软模板。硅表面上的聚苯乙烯-聚(2-乙烯基吡啶)嵌段共聚物的加成敏感,自组装单层的圆柱域被用作生产平行金属纳米线的结构元素。通过该基本嵌段的质子化作用,用简单的阴离子金属配合物水溶液对P2VP嵌段进行金属离子负载,使其阳离子,静电吸引导致质子化的P2VP域内金属配合物的局部浓度较高。随后的短暂等离子体处理同时去除了聚合物并产生了金属纳米线。可以通过控制溶液浓度,沉积时间和嵌段共聚物的分子量以及其他因素来调节图案的形态。可以通过石墨外延在不同形状的电子束光刻定义的硅基板上对准水平金属纳米阵列。该方法具有高度的通用性,因为操作纳米线组成,尺寸,间距和方向的过程非常简单,并且基于有效的水性无机化学。

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