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The fabrication of flip-covered plasmonic nanostructure surfaces with enhanced wear resistance

机译:具有增强耐磨性耐磨损性的翻转等离子体纳米结构表面的制造

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摘要

Exposed nanostructure surfaces often suffer from external dynamic wear, particularly when used in human interaction, resulting in surface defects and the degradation of plasmonic resonance properties particularly in terms of transmittance extinction rate and peak-to-valley slope. In this work, a method for the fabrication of flip-covered silver nanostructure-arrayed surfaces is shown to enhance wear resistance. Selectively transferred silver dot and silver webbed-trench exposed reference samples were fabricated by metal nanoimprint, and flip-covered samples were created by flipping and bonding reference samples onto a PET film coated with an adhesive layer. The samples' spectral transmittance was measured before and after a dynamic wear test. Some spectral shift was observed due to the change in refractive index of the surrounding media, but this was not as significant as the effects of the other chosen geometry factors. It was found that dynamic wear had a greater effect on the plasmonic resonance behavior of the exposed samples than in those that had been flip-covered. This suggests that flip-covering may be an effective strategy for the protection of plasmonic resonators against dynamic wear. It is expected that the slight variations in spectral transmittance could be compensated through proper tuning of the sample geometry. (C) 2016 Elsevier B.V. All rights reserved.
机译:暴露的纳米结构表面经常存在外部动态磨损,特别是当在人体相互作用中使用时,导致表面缺陷和等离子体共振性能的降解,特别是在透射率消光速率和峰 - 谷斜率方面。在这项工作中,示出了制造翻盖覆盖的银纳米结构排列表面的方法以提高耐磨性。选择性转移的银点和银蹼沟槽暴露的参考样品由金属纳米视网膜制造,通过将参考样品翻转和将参考样品翻转并粘合到用粘合剂层的PET膜上产生翻盖样品。在动态磨损测试之前和之后测量样本的光谱透射率。由于周围介质的折射率的变化,观察到一些光谱转变,但这并不像其他所选择的几何因子的影响那么重要。发现动态磨损对暴露样本的等离子体共振行为具有比在翻转的覆盖物的等离子体共振行为的效果更大。这表明翻转覆盖物可以是保护抗动态磨损等离子体谐振器的有效策略。预期通过适当调谐样品几何形状可以补偿光谱透射率的轻微变化。 (c)2016 Elsevier B.v.保留所有权利。

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