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Real-time monitoring for the morphological variations of single gold nanorods

机译:形态的实时监控变化的单一的金纳米棒

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The morphological characteristics of metal nanoparticles, particularly the shape, play an essential role in the optical, physical and chemical properties. In this work, we reported a transverse etching process to investigate the morphological variations of single gold nanorods (GNRs). Dark-field microscopy and Rayleigh scattering spectroscopy were used as complementary technologies to track the transverse etching process. Dark-field imaging with high spatial and temporal resolution could easily monitor the transverse etching process of GNRs in situ and in real time. Interactions between the scattering spectrum and the morphological variations were judiciously calculated within the dipole approximation by the Drude function. The calculated peak shift of GNRs (Delta lambda(max) = 17 nm) was obtained via the ratio of the long axis and short axis (aspect ratio) of GNRs from transmission electron microscopy. The average scattering peak shift (Delta lambda(max) = 22 nm) from Rayleigh scattering spectroscopy was in good agreement with the calculated peak shift. Monitoring the morphological variations of single GNRs enables us to track the transverse etching of GNRs at arbitrary time. This promises to be a useful method for the study of different nanomaterials and their spectral properties.
机译:金属的形态特征纳米粒子,尤其是形状,发挥重要作用的光学,物理和化学性质。横向腐蚀过程调查形态变化的单一的金纳米棒(GNRs)。散射光谱被用作互补的技术跟踪横向腐蚀过程。高空间和时间分辨率很容易监控的横向腐蚀过程GNRs原位和实时。散射光谱和之间形态变化是明智的在偶极子近似的计算柯克函数。(δλ(max) = 17海里)获得通过长轴和短轴的比值(方面从透射电子GNRs比率)显微镜。(δλ(max) = 22 nm)从瑞利散射光谱法是在良好的协议计算峰转变。单GNRs使的形态学变化我们跟踪的GNRs横向腐蚀任意的时间。研究方法不同的纳米材料和它们的光谱特性。

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