首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >THERMAL TRANSPORT FROM GOLD NANOROD TO SOLVENT, AN INVESTIGATION OF LIGAND EFFECTS BY ULTRAFAST LASER SPECTROSCOPY
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THERMAL TRANSPORT FROM GOLD NANOROD TO SOLVENT, AN INVESTIGATION OF LIGAND EFFECTS BY ULTRAFAST LASER SPECTROSCOPY

机译:从金纳米粉到溶剂的热传输,超快激光光谱对配体效应的研究

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To facilitate analysis of nanoscale heat transfer in nanoparticle systems the thermal properties of ligand layers must be understood. To this end, we use an optical pump-probe technique to study the thermal transport across ligands on gold nanorods and into the solvent. We find that varying properties of the ligand can have large impacts on the thermal decay of a nanorod after exposure to a laser pulse. By raising the concentration of free CTAB from 1 mM and 10 mM in solutions, the CTAB layer's effective thermal interface conductance increases three fold. The transition occurs near the CTAB critical micelle concentration. Similar results are found for other ligand layers.
机译:为了便于分析纳米粒子系统中的纳米级传热,必须了解配体层的热性能。为此,我们使用光学泵浦探针技术来研究金纳米棒上的配体和溶剂之间的热传输。我们发现,在暴露于激光脉冲后,配体的不同性质会对纳米棒的热衰减产生很大影响。通过将溶液中游离CTAB的浓度从1 mM和10 mM升高,CTAB层的有效热界面电导增加了三倍。该转变发生在CTAB临界胶束浓度附近。对于其他配体层也发现了类似的结果。

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