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首页> 外文期刊>The Journal of Chemical Physics >Ultrafast studies of gold, nickel, and palladium nanorods
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Ultrafast studies of gold, nickel, and palladium nanorods

机译:金,镍和钯纳米棒的超快速研究

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Steady state and ultrafast transient absorption studies have been carried out for gold, nickel, and palladium high aspect ratio nanorods. For each metal, nanorods were fabricated by electrochemical deposition into similar to 6 mu m thick polycarbonate templates. Two nominal pore diameters(10 and 30 nm, resulting in nanorod diameters of about 40 and 60 nm, respectively) were used, yielding nanorods with high aspect ratios (>25). Static spectra of nanorods of all three metals reveal both a longitudinal surface plasmon resonance (SPRL) band in the mid-infrared as well as a transverse band in the visible for the gold and larger diameter nickel and palladium nanorods. The appearance of SPRL bands in the infrared for high aspect ratio metal nanorods and the trends in their maxima for the different aspect ratios and metals are consistent with calculations based on the Gans theory. For the gold and nickel samples, time resolved studies were performed with a subpicosecond resolution using 400 nm excitation and a wide range of probe wavelengths from the visible to the mid-IR as well as for infrared excitation (near 2000 cm(-1)) probed at 800 nm. The dynamics observed for nanorods of both metals and both diameters include transients due to electron-phonon coupling and impulsively excited coherent acoustic breathing mode oscillations, which are similar to those previously reported for spherical and smaller rod-shaped gold nanoparticles. The dynamics we observe are the same within the experimental uncertainty for 400 nm and infrared (5 mu m) excitation probed at 800 nm. The transient absorption using 400 nm excitation and 800 nm probe pulses of the palladium nanorods also reveal coherent acoustic oscillations. The results demonstrate that the dynamics for high aspect ratio metal nanorods are similar to those for smaller nanoparticles. (C) 2007 American Institute of Physics.
机译:对于金,镍和钯高纵横比纳米棒,已经进行了稳态和超快瞬态吸收研究。对于每种金属,通过电化学沉积将纳米棒制成类似于6微米厚的聚碳酸酯模板。使用两个标称孔径(10和30 nm,分别导致纳米棒直径分别约为40和60 nm),从而产生具有高纵横比(> 25)的纳米棒。所有三种金属的纳米棒的静态光谱都显示出中红外的纵向表面等离子体共振(SPRL)带以及可见的金和更大直径的镍和钯纳米棒的横向带。高长径比金属纳米棒在红外中的SPRL带的出现以及不同长宽比和金属的最大SPRL带的趋势与基于Gans理论的计算是一致的。对于金和镍样品,使用400 nm激发和从可见光到中红外以及红外激发(近2000 cm(-1))的大范围探针波长,以亚皮秒分辨率进行了时间分辨研究。在800 nm处探测对于两种金属和两种直径的纳米棒,观察到的动力学包括由于电子-声子耦合和脉冲激发相干声呼吸模式振荡而引起的瞬态,这与先前报道的球形和较小棒状金纳米颗粒的动力学相似。我们观察到的动力学在400 nm的实验不确定性和在800 nm探测的红外(5μm)激发范围内是相同的。使用钯纳米棒的400 nm激发和800​​ nm探测脉冲的瞬态吸收也显示出相干的声振荡。结果表明,高纵横比金属纳米棒的动力学与较小纳米颗粒的动力学相似。 (C)2007美国物理研究所。

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