Institute of Physics, Leiden University , Rapenburg 70, 2311 EZ Leiden, The Netherlands.
Nano Lett. 2014 Feb 12;14(2):915-22. doi: 10.1021/nl404304h. Epub 2014 Jan 21.
Acoustic vibrations of single gold nanorods coated with silver were investigated. We used single-particle pump-probe spectroscopy to monitor the silver deposition through the particle vibrations. Two vibration modes, the breathing mode and extensional mode, are observed, and the vibrational frequencies are measured as functions of the amount of silver deposited on single gold nanorods. The breathing mode frequency was found to decrease with silver deposition, while the extensional mode frequency was almost constant for silver shells up to 6 nm. The frequency changes agree with a model based on continuum mechanics and on the assumption of a uniform silver coating. The quality factors for the breathing mode and the extensional mode are hardly affected by silver deposition, indicating that the introduced interface between gold and silver contributes negligibly to the damping of the particle vibrations. Finally, we demonstrated that an atomic layer of silver can be detected using the particle acoustic vibrations.
我们研究了涂有银的单个金纳米棒的声学振动。我们使用单粒子泵浦-探测光谱学来通过颗粒振动监测银的沉积。观察到两种振动模式,呼吸模式和伸缩模式,并测量了振动频率作为沉积在单个金纳米棒上的银量的函数。发现呼吸模式频率随银沉积而降低,而对于厚度达 6nm 的银壳,伸缩模式频率几乎保持不变。频率变化与基于连续介质力学和假设均匀银涂层的模型一致。呼吸模式和伸缩模式的品质因数几乎不受银沉积的影响,这表明在金和银之间引入的界面对颗粒振动的阻尼影响可以忽略不计。最后,我们证明可以使用颗粒声振动来检测单层银。