Universite Pierre et Marie Curie Paris 6, UMR 7070, LM2N, 4 place Jussieu, 75005 Paris, France.
ACS Nano. 2010 Jun 22;4(6):3489-97. doi: 10.1021/nn1005446.
Au nanocrystals (NCs) with different crystalline structures and related morphologies are unselectively synthesized using an organometallic route. The acoustic vibrations of these NCs are studied by plasmon mediated low-frequency Raman scattering (LFRS). A splitting of the quadrupolar vibration mode is pointed out in the LFRS spectrum. Comparison of the measured frequencies with calculations and careful examination of the NCs morphologies by transmission electron microscopy ascertain this splitting as being an effect of crystallinity. The excitation dependence of the LFRS spectra is interpreted by the shape-selection of the NCs via plasmon-vibration coupling. These results give new insights into the crystallinity influence on both the vibrations of the NCs and their coupling with plasmons and demonstrate the relevance of elastic anisotropy in monodomain NCs.
使用有机金属路线非选择性地合成具有不同晶体结构和相关形态的金纳米晶体 (NCs)。通过等离子体介导的低频 Raman 散射 (LFRS) 研究这些 NCs 的声振动。在 LFRS 光谱中指出了四极振动模式的分裂。通过与计算的比较以及通过透射电子显微镜对 NCs 形态的仔细检查,证实了这种分裂是结晶度的影响。通过等离子体-振动耦合对 NCs 的形状选择来解释 LFRS 光谱的激发依赖性。这些结果深入了解了结晶度对 NCs 的振动及其与等离子体的耦合的影响,并证明了单畴 NCs 中弹性各向异性的相关性。