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Creation and luminescence of size-selected gold nanorods

机译:创建和发光size-selected黄金纳米棒

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Fluorescent metal nanoparticles have attracted great interest in recent years for their unique properties and potential applications. Their optical behaviour depends not only on size but also on shape, and will only be useful if the morphology is stable. In this work, we produce stable size-selected gold nanorods (aspect ratio 1-2) using a size-selected cluster source and correlate their luminescence behaviour with the particle shape. Thermodynamic modelling is used to predict the preferred aspect ratio of 1.5, in agreement with the observations, and confirms that the double-icosahedron observed in experiments is significantly lower in energy than the alternatives. Using these samples a fluorescence lifetime imaging microscopy study observed two photon luminescence from nanoparticle arrays and a fast decay process (<100 ps luminescence lifetime), which are similar to those found from ligand stabilized gold nanorods under the same measurement conditions, indicating that a surface plasmon enhanced two-photon excitation process is still active at these small sizes. By further reducing the nanoparticle size, this approach has the potential to investigate size-dependent luminescence behaviour at smaller sizes than has been possible before.
机译:荧光金属纳米粒子吸引了极大的兴趣近年来为他们的独一无二的性质和潜在的应用。但光学行为不仅取决于大小同样在形状,如果只会有用形态学是稳定的。稳定size-selected金纳米棒(纵横比使用集群size-selected源和1 - 2)关联的发光行为粒子的形状。预测的首选长宽比1.5,协议与观察,证实了double-icosahedron观察到实验在能量比显著降低的替代方案。荧光寿命成像显微镜研究观察两个光子发光纳米颗粒阵列和一个快速衰减的过程(< 100 ps发光寿命)从配体稳定类似发现金纳米棒在同样的测量条件,表明表面等离子体增强双光子激发过程仍然是活跃在这些小尺寸。纳米颗粒的大小,这种方法的潜在的研究尺度依赖的在较小的尺寸比发光行为之前是不可能的。

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