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通过单粒子光谱学揭示 Au 纳米粒子簇的双光子光致发光的巨大增强。

Huge enhancement in two-photon photoluminescence of Au nanoparticle clusters revealed by single-particle spectroscopy.

机构信息

Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543.

出版信息

J Am Chem Soc. 2013 May 15;135(19):7272-7. doi: 10.1021/ja400364f. Epub 2013 May 1.

Abstract

Aggregated metal nanoparticles have been known to display significantly enhanced two-photon photoluminescence (TPPL) compared to nonaggregated nanoparticles, which could be utilized to develop platforms for two-photon sensing and imaging applications. Here we have conducted single-particle spectroscopic studies on gold (Au) nanoparticle clusters of different sizes to understand the enhancement mechanisms and explore the limit of maximum achievable enhancement. Our studies show that the TPPL intensity of Au nanoparticle clusters significantly increases from monomer to trimer. The averaged intensity of the Au nanosphere dimers and linear trimers is ~7.8 × 10(3) and ~7.0 × 10(4) times that of Au nanosphere monomers, respectively. A highest enhancement of 1.2 × 10(5) folds was obtained for the linear trimer. The TPPL spectra of these single Au nanosphere clusters closely resemble their corresponding scattering spectra, suggesting strong correlation between their TPPL with plasmon resonance. The scattering spectra of dimers and linear trimers displayed cos(2) dependence on the detection polarization, while their TPPL displayed cos(4) dependence on the excitation polarization, which are very similar to Au nanorods. These results suggest that two-photon excitation of dimer and linear trimer is strongly coupled to their longitudinal plasmon resonance modes. These studies help to provide insight on fundamental understanding of the enhancement mechanisms as well as development of biomedical and photonic applications.

摘要

聚集的金属纳米粒子显示出比非聚集纳米粒子显著增强的双光子光致荧光(TPPL),这可用于开发用于双光子传感和成像应用的平台。在这里,我们对不同尺寸的金(Au)纳米粒子簇进行了单粒子光谱研究,以了解增强机制并探索最大可实现增强的极限。我们的研究表明,Au 纳米粒子簇的 TPPL 强度从单体到三聚体显著增加。Au 纳米球二聚体和线性三聚体的平均强度分别约为 Au 纳米球单体的 7.8×10(3)和 7.0×10(4)倍。线性三聚体获得了最高的 1.2×10(5)倍增强。这些单个 Au 纳米球簇的 TPPL 光谱与它们相应的散射光谱非常相似,表明它们的 TPPL 与等离子体共振之间存在强烈的相关性。二聚体和线性三聚体的散射光谱对检测偏振具有 cos(2)依赖性,而它们的 TPPL 对激发偏振具有 cos(4)依赖性,这与 Au 纳米棒非常相似。这些结果表明,二聚体和线性三聚体的双光子激发强烈耦合到它们的纵向等离子体共振模式。这些研究有助于提供对增强机制的基本理解以及生物医学和光子学应用的发展的深入了解。

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