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Gold nanoparticle array formation on dimpled Ta templates using pulsed laser-induced thin film dewetting

机译:脉冲激光诱导薄膜去湿在凹面Ta模板上形成金纳米颗粒阵列

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摘要

Here we show that pulsed laser-induced dewetting (PLiD) of a thin Au metallic film on a nano-scale ordered dimpled tantalum (DT) surface results in the formation of a high quality Au nanoparticle (NP) array. In contrast to thermal dewetting, PLiD does not result in deformation of the substrate, even when the Au film is heated to above its melting point. PLiD causes local heating of only the metal film and thus thermal oxidation of the Ta substrate can be avoided, also because of the high vacuum (low pO(2)) environment employed. Therefore, this technique can potentially be used to fabricate NP arrays composed of high melting point metals, such as Pt, not previously possible using conventional thermal annealing methods. We also show that the Au NPs formed by PLiD are more spherical in shape than those formed by thermal dewetting, likely demonstrating a different dewetting mechanism in the two cases. As the metallic NPs formed on DT templates are electrochemically addressable, a longer-term objective of this work is to determine the effect of NP size and shape (formed by laser vs. thermal dewetting) on their electrocatalytic properties.
机译:在这里,我们显示出在纳米级有序钽(DT)表面上的薄金金属薄膜的脉冲激光诱导去湿(PLiD)导致形成高质量的金纳米粒子(NP)阵列。与热润湿相反,即使将Au薄膜加热到其熔点以上,PLiD也不会使基材变形。由于使用了高真空(低pO(2))环境,PLiD仅引起金属膜的局部加热,因此可以避免Ta基板的热氧化。因此,该技术可潜在地用于制造由高熔点金属(例如Pt)组成的NP阵列,而这是以前使用常规热退火方法无法实现的。我们还表明,由PLiD形成的Au NPs的形状比通过热反润湿形成的Au NPs的球形更强,这可能表明在两种情况下存在不同的反润湿机理。由于在DT模板上形成的金属NPs是电化学可寻址的,因此这项工作的长期目标是确定NP尺寸和形状(由激光与热脱湿形成)对其电催化性能的影响。

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