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通过基于表面的合成精确控制金纳米立方体之间的尺寸和间隙以实现高表面增强拉曼散射性能。

Precise control of the size and gap between gold nanocubes by surface-based synthesis for high SERS performance.

作者信息

Omar Rana, En Naciri Aotmane, Fahes Abeer, Jradi Safi, Issa Ali, Kuznetsov Dmitry, Shur Vladimir, Zelenovskiy Pavel, Battie Yann, Akil Suzanna

机构信息

LCP-A2MC, Institut Jean Barriol, Université de Lorraine, 1 Bd Arago, 57070, Metz, France.

L2n, Laboratoire de Lumière, Nanomatériaux, Nanotechnologies, ICD, Université, de Technologie de Troyes, France.

出版信息

Soft Matter. 2020 Feb 19;16(7):1857-1865. doi: 10.1039/c9sm02405k.

Abstract

The optical properties of a monolayer of nanocomposite film (PMMA/gold nanocubes) were provided by fitting a proposed theoretical model to spectroscopic ellipsometry (SE) measurements. For such a thin film, these features cannot be successfully determined by means of experimental and conventional effective medium theory such as Maxwell-Garnett or Bruggeman. To make it possible, we developed a model of two classical Lorentz oscillators; one for a PMMA layer and the other for GNCs, revealing one homogeneous layer and rapid analysis without the need for large computational resources. Additionally, we tailored both the size and number of GNCs in the PMMA layer by tuning the synthesis parameters as seen in scanning electron microscopy (SEM) images. In parallel, SE measurements clearly highlighted the change in the optical properties of GNCs as a function of their density on the substrate and dimensions. Our findings demonstrate that SE is an alternative method to characterize layered GNCs on opaque substrates efficiently, which has potential implications for designing other morphologies in the future.

摘要

通过将一个提出的理论模型与光谱椭偏仪(SE)测量结果进行拟合,得到了单层纳米复合薄膜(聚甲基丙烯酸甲酯/金纳米立方体)的光学性质。对于这样的薄膜,这些特性无法通过实验和传统的有效介质理论(如麦克斯韦-加尼特理论或布鲁格曼理论)成功确定。为了实现这一点,我们开发了一个由两个经典洛伦兹振子组成的模型;一个用于聚甲基丙烯酸甲酯层,另一个用于金纳米立方体,揭示了一个均匀层,并且无需大量计算资源即可进行快速分析。此外,正如扫描电子显微镜(SEM)图像所示,我们通过调整合成参数来定制聚甲基丙烯酸甲酯层中金纳米立方体的尺寸和数量。同时,SE测量清楚地突出了金纳米立方体光学性质随其在基底上的密度和尺寸的变化。我们的研究结果表明,SE是一种有效表征不透明基底上分层金纳米立方体的替代方法,这对未来设计其他形态具有潜在意义。

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