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Fabrication of metal nanoparticle arrays by controlled decomposition of polymer particles

机译:通过聚合物颗粒的受控分解制备金属纳米颗粒阵列

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摘要

We report a novel fabrication method for ordered arrays of metal nanoparticles that exploits the uniform arrangement of polymer beads deposited as close-packed monolayers. In contrast to colloidal lithography that applies particles as masks, we used thermal decomposition of the metal-covered particles to precisely define metal structures. Large arrays of noble metal (Au, Ag, Pt) nanoparticles were produced in a three-step process on silicon, fused silica and sapphire substrates, demonstrating the generality of this approach. Polystyrene spheres with diameters ranging between 110 nm and 1 μm were convectively assembled into crystalline monolayers, coated with metal and annealed in a resistive furnace or using an ethanol flame. The thermal decomposition of the polymer microspheres converted the metal layer into particles arranged in hexagonal arrays that preserved the order of the original monolayer. Both the particle size and the interparticle distance were adjusted via the thickness of the metal coating and the sphere diameter, respectively.
机译:我们报告了一种新颖的制造方法,用于有序排列的金属纳米粒子阵列,该方法利用了沉积为紧密堆积的单分子层的聚合物珠粒的均匀排列。与将粒子用作掩膜的胶体光刻技术不同,我们使用金属覆盖粒子的热分解来精确定义金属结构。在硅,熔融二氧化硅和蓝宝石衬底上的三步过程中,生成了大批贵金属(Au,Ag,Pt)纳米颗粒,这证明了这种方法的普遍性。将直径在110 nm和1μm之间的聚苯乙烯球对流组装成结晶单层,涂上金属并在电阻炉或使用乙醇火焰中退火。聚合物微球的热分解将金属层转化为六边形排列的颗粒,这些颗粒保留了原始单层的顺序。分别通过金属涂层的厚度和球直径来调节粒径和颗粒间距离。

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