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Hierarchical metallic and ceramic nanostructures from laser interference ablation and block copolymer phase separation

机译:分层纳米结构金属和陶瓷从激光干涉消融和块共聚物相分离

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摘要

We report on the formation of hierarchical nanostructures of Au, PtO_x, Fe_xO_y and PdO_x using a hybrid technique by combining laser interference ablation (LIA) and block copolymer phase separation (BCPS). Different types of hierarchical arrays can be obtained including square, triangular, linear and circular arrays by varying the loading time of the block co-polymer with metallic salts, and the laser interference technique. The primary ordering of the as-generated nanoarrays (30-100 nm) is tunable by changing either the composition of the block copolymer spun from solution or by changing other parameters that affect the phase separation kinetics of the block copolymer, while the secondary ordering of the features can be tuned from 200 nm to 2 nm, by changing the angle of convergence of the laser beams on the patterned substrate. Such a robust method can be applied to the fabrication of other metallic and ceramic materials including Ag, Co, and Ni (O) and has potential use in the large scale fabrication of hierarchical arrays of catalysts that can be used to grow germanium, silicon nanowires using the vapour-liquid-solid growth (VLS) technique. The as-generated arrays can also find use in optical as well as sensor applications for biodetection and biosensing.
机译:我们报告的形成等级制度纳米结构的非盟、PtO_x Fe_xO_y PdO_x使用混合技术结合激光干扰消融(LIA)和嵌段共聚物相分离(bcp)。分层可以获得包括数组广场、三角、线性和环形阵列不同的加载时间阻止丙烯与金属盐,激光干涉技术。生成纳米阵列(30 - 100 nm)是可调的改变物体的成分共聚物旋转或通过改变其他的解决方案参数影响相分离动力学的嵌段共聚物,可以调整二次排序的功能从200年到2 nm,通过改变的角度收敛的激光图案衬底。其他金属和陶瓷的制造材料包括Ag)有限公司和倪(O)大规模制造的潜在用途分层可以使用数组的催化剂生长锗、硅纳米线使用vapour-liquid-solid增长(VLS)技术。生成数组也可以找到在光学中使用以及传感器biodetection申请和若。

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