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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Mechanical Damping of Longitudinal Acoustic Oscillations of Metal Nanoparticles in Solution
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Mechanical Damping of Longitudinal Acoustic Oscillations of Metal Nanoparticles in Solution

机译:溶液中金属纳米粒子的纵向声振动的机械阻尼

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摘要

We present measurements and theoretical analysis of the damping of high-frequency acoustic vibrations of metal nanoparticles immersed in solution. Building on our previous work [Pelton, M.; Sader, j. E.; Burgin, J.; Liu, M.; Guyot-Sionnest, P.; Gosztola, D. Nat. Nanotechnol 2009, 4, 492-495], we study several bipyramidal gold nanoparticle samples in a series of solvent environments in order to examine the origin of the measured damping. We use a fluid-structure interaction model to explain the damping due to the fluidsurrounding the nanoparticles, extending the mode! to encompass the case of an arbitrary slender body. Good agreement with the theoretical model is found for a range of pure solvents and solvent mixtures, demonstrating that classical continuum theories for fluid mechanics are able to quantify high-frequency phenomena at the nanoscale. The remaining damping rate, which can be attributed to processes intrinsic to the nanoparticles, is consistent across all the measured samples. This demonstrates that the measured intrinsic damping is indeed a characteristic property of these bipyramidal metal nanoparticles, rather than being sample dependent.
机译:我们目前对浸入溶液中的金属纳米颗粒的高频声振动的阻尼进行测量和理论分析。以我们先前的工作为基础[Pelton,M .; Sader,j。 E .; J.刘敏; Guyot-Sionnest,体育; Gosztola,D。Nat。 Nanotechnol 2009,4,492-495],我们研究了在一系列溶剂环境中的几个双锥体金纳米颗粒样品,以检查所测阻尼的起源。我们使用流固耦合模型来解释由于流体围绕纳米颗粒而引起的阻尼,从而扩展了模态!包括任意细长的身体。对于一系列纯溶剂和溶剂混合物,发现与理论模型有很好的一致性,这表明流体力学的经典连续谱理论能够量化纳米级的高频现象。可以归因于纳米颗粒固有过程的剩余阻尼率在所有测量样品中均保持一致。这表明所测量的固有阻尼确实是这些双锥体金属纳米颗粒的特征,而不是依赖于样品。

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