Institut Lumière Matière, Université de Lyon, Université Claude Bernard Lyon 1, UMR CNRS 5306 , 69622 Villeurbanne, France.
Laboratoire Interdisciplinaire Carnot de Bourgogne, UMR 6303 CNRS-Université de Bourgogne Franche Comté , 9 Avenue A. Savary, BP 47 870, F-21078 Dijon Cedex, France.
Nano Lett. 2016 Jun 8;16(6):3843-9. doi: 10.1021/acs.nanolett.6b01314. Epub 2016 May 19.
Acoustic vibrations of assemblies of gold nanoparticles were investigated using ultralow frequency micro-Raman scattering and finite element simulations. When exciting the assemblies resonantly with the surface plasmon resonance of electromagnetically coupled nanoparticles, Raman spectra present an ultralow frequency band whose frequency lies below the lowest Raman active Lamb mode of single nanoparticles that was observed. This feature was ascribed to a Raman vibration mode of gold nanoparticle "supermolecules", that is, nanoparticles mechanically coupled by surrounding polymer molecules. Its measured frequency is inversely proportional to the nanoparticle diameter and sensitive to the elastic properties of the interstitial polymer. The latter dependence as well as finite element simulations suggest that this mode corresponds to the out-of-phase semirigid translation (l = 1 Lamb mode) of each nanoparticle of a dimer inside the matrix, activated by the mechanical coupling between the nanoparticles. These observations were permitted only thanks to the resonant excitation with the coupling plasmon excitation, leading to an enhancement up to 10(4) of the scattering by these vibrations. This enhanced ultralow frequency Raman scattering thus opens a new route to probe the local elastic properties of the surrounding medium.
使用超低频率微拉曼散射和有限元模拟研究了金纳米粒子组装体的声学振动。当用电磁耦合纳米粒子的表面等离子体共振共振激发组装体时,拉曼光谱呈现出一个超低频率带,其频率低于观察到的单个纳米粒子的最低拉曼活性兰姆模式。该特征归因于金纳米粒子“超分子”的拉曼振动模式,即通过周围聚合物分子机械耦合的纳米粒子。其测量频率与纳米粒子直径成反比,并且对间隙聚合物的弹性性质敏感。后者的依赖性以及有限元模拟表明,该模式对应于基质中二聚体中每个纳米粒子的非相位半刚性平移(l = 1 兰姆模式),由纳米粒子之间的机械耦合激活。这些观察结果仅得益于与耦合等离子体激发的共振激发,导致这些振动的散射增强高达 10(4)。因此,这种增强的超低频率拉曼散射为探测周围介质的局部弹性性质开辟了新途径。