首页> 外文期刊>Bulletin of the Korean Chemical Society >Preparation of Two-Dimensional Au Nanoparticle Arrays with Controllable Gap Distance: Interparticle Coupling Effect on Surface Plasmon Resonance and SERS
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Preparation of Two-Dimensional Au Nanoparticle Arrays with Controllable Gap Distance: Interparticle Coupling Effect on Surface Plasmon Resonance and SERS

机译:间隙距离可控的二维金纳米粒子阵列的制备:粒子间耦合对表面等离子体共振和SERS的影响。

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摘要

In this paper, we demonstrate the fabrication of highly ordered, close-packed, two-dimensional Au nanoparticle (2D Au NP) arrays by surface modification of Au NPs with self-assembly chemistry of (3-mercaptopropyl)- trimethoxysilane (MPTMS) at a water/hexane interface. Aside from functioning as a packing molecule, MPTMS provided active sites for direct substrate polymerization of polydimethylsiloxane (PDMS). The optical properties of the fabricated 2D Au NP array were then analyzed by UV-vis-NIR and Raman spectroscopy. The 2D Au NP array showed unique surface plasmon resonance (SPR) modes that came from the bare dipole-dipole coupling interaction of neighboring nanoparticles, which was due to the condition of sub-1-nm distance between the NPs. We were able to deduce these SPR modes by investigating their characteristics by controlling the gap between the Au NPs through mechanical force expansion. Second, Raman spectroscopy indicated that the close-packed Au nanoparticle array exhibits strong surface-enhanced Raman scattering response; and, as expected, an inverse relationship was observed between Raman intensity and gap length. In addition, the Au nanorod array showed higher sensitivity compared to the Au nanosphere array as building block for the 2D Au NP array.
机译:在本文中,我们展示了通过在(3-巯基丙基)-三甲氧基硅烷(MPTMS)的自组装化学作用下修饰Au NPs的表面来修饰高度有序,密排的二维Au纳米粒子(2D Au NP)阵列的方法。水/己烷界面。除了起包装分子的作用外,MPTMS还为聚二甲基硅氧烷(PDMS)的直接底物聚合提供了活性位点。然后通过UV-vis-NIR和拉曼光谱分析所制造的2D Au NP阵列的光学性质。 2D Au NP阵列显示出独特的表面等离振子共振(SPR)模式,该模式来自相邻纳米粒子的裸偶极-偶极耦合相互作用,这是由于NP之间的距离小于1 nm所致。通过研究通过机械力扩展控制金纳米颗粒之间的间隙,我们可以通过研究它们的特性来推断这些SPR模式。其次,拉曼光谱表明紧密堆积的金纳米颗粒阵列表现出很强的表面增强拉曼散射响应。正如预期的那样,拉曼强度与间隙长度之间存在反比关系。此外,与作为2D Au NP阵列的构建基块的Au纳米球阵列相比,Au纳米棒阵列显示出更高的灵敏度。

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