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首页> 外文期刊>Nanotechnology >Polarization-driven self-organization of silver nanoparticles in 1D and 2D subwavelength gratings for plasmonic photocatalysis
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Polarization-driven self-organization of silver nanoparticles in 1D and 2D subwavelength gratings for plasmonic photocatalysis

机译:偏振驱动的自组织银纳米颗粒在1D和2D亚壳体光电催化中的2D子和2D子和2D子波长光栅中

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摘要

One of the main challenges in plasmonics is to conceive large-scale, low-cost techniques suitable for the fabrication of metal nanoparticle patterns showing precise spatial organization. Here, we introduce a simple method based on continuous-wave laser illumination to induce the self-organization of silver nanoparticles within high-index thin films. We show that highly regular and homogeneous nanoparticle gratings can be produced on large areas using laser-controlled self-organization processes. This very versatile technique can provide 1D and 2D patterns at a subwavelength scale with tunable features. It does not need any stabilization or expensive devices, such as those required by optical or electron lithography, and is rapid to implement. Accurate in-plane and in-depth characterizations provide valuable information to explain the mechanisms that lead to pattern formation and especially how 2D self-organization can fall into place with successive laser scans. The regular and homogeneous 2D self-organization of metallic NPs with a single laser scan is also reported for the first time in this article. As the reported nanostructures are embedded in porous TiO2, we also theoretically explore the interesting potential of organization on the photocatalytic activity of Ag-NP-containing TiO2 porous films, which is one of the most promising materials for self-cleaning or remediation applications. Realistic electromagnetic simulations demonstrate that the periodic organization of silver nanoparticles can increase the light intensity within the film more than ten times that produced with randomly distributed nanoparticles, leading as expected to enhanced photocatalytic efficiency.
机译:血浆中主要挑战之一是设想适用于制造金属纳米粒子图案的大规模低成本技术,显示出精确的空间组织。这里,我们介绍了一种基于连续波激光照射的简单方法,诱导高折射率薄膜内的银纳米颗粒的自组织。我们表明,使用激光受控的自组织工艺,可以在大面积上生产高度常规和均匀的纳米粒子放射。这种非常通用的技术可以以可调谐特征的子波长刻度提供1D和2D图案。它不需要任何稳定或昂贵的设备,例如光学或电子光刻所需的设备,并且迅速实现。准确的面内和深度特征提供了有价值的信息,以解释导致模式形成的机制,特别是2D自组织如何使用连续的激光扫描到位。本文首次报告了具有单激光扫描的常规和均匀的2D金属NPS的自组织。随着报告的纳米结构嵌入多孔TiO2中,理论上,我们也探讨了组织对含Ag-NP的TiO2多孔膜的光催化活性的有趣潜力,这是自清洁或修复应用中最有前途的材料之一。现实的电磁模拟表明,银纳米粒子的周期性组织可以将薄膜内的光强度增加超过随机分布的纳米颗粒产生的十倍,导致预期的光催化效率。

著录项

  • 来源
    《Nanotechnology》 |2017年第3期|共10页
  • 作者单位

    Univ Lyon Lab Hubert Curien UMR 5516 Inst Opt Grad Sch UJM St Etienne CNRS F-42023 St Etienne France;

    Univ Lyon Lab Hubert Curien UMR 5516 Inst Opt Grad Sch UJM St Etienne CNRS F-42023 St Etienne France;

    Univ Lyon Lab Hubert Curien UMR 5516 Inst Opt Grad Sch UJM St Etienne CNRS F-42023 St Etienne France;

    Univ Lyon Lab Hubert Curien UMR 5516 Inst Opt Grad Sch UJM St Etienne CNRS F-42023 St Etienne France;

    Univ Lyon Lab Hubert Curien UMR 5516 Inst Opt Grad Sch UJM St Etienne CNRS F-42023 St Etienne France;

    Univ Lyon Lab Hubert Curien UMR 5516 Inst Opt Grad Sch UJM St Etienne CNRS F-42023 St Etienne France;

    Univ Lyon Lab Hubert Curien UMR 5516 Inst Opt Grad Sch UJM St Etienne CNRS F-42023 St Etienne France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    metal nanoparticles; nanoparticle gratings; patterning; thin films; FDTD method; photocatalysis;

    机译:金属纳米粒子;纳米粒子放射;图案化;薄膜;FDTD方法;光催化;

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