Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.
Phys Chem Chem Phys. 2018 Jul 4;20(26):17687-17693. doi: 10.1039/c8cp03230k.
The mechanical resonances of metal nanostructures are strongly affected by their environment. In this paper the way the breathing modes of single metal nanowires are damped by liquids with different viscosities was studied by ultrafast pump-probe microscopy experiments. Both nanowires supported on a glass substrate and nanowires suspended over trenches were investigated. The measured quality factors for liquid damping for the suspended nanowires are in good agreement with continuum mechanics calculations for an inviscid fluid that assume continuity in stress and displacement at the nanowire-liquid interface. This shows that liquid damping is controlled by radiation of sound waves into the medium. For the nanowires on the glass surface the quality factors for liquid damping are approximately 60% higher than those for the suspended nanowires. This is attributed to a shadowing effect. The nanowires in our measurements have pentagonal cross-sections. This produces two different breathing modes and also means that one of the faces for the supported nanowires is blocked by the substrate, which reduces the amount of damping from the liquid. Comparing the supported and suspended nanowires also allows us to estimate the effect of the substrate on the acoustic mode damping. We find that the substrate has a weak effect, which is attributed to poor mechanical contact between the nanowires and the substrate.
金属纳米结构的机械共振强烈地受到其环境的影响。在本文中,通过超快泵浦探测显微镜实验研究了不同粘度的液体对单根金属纳米线的呼吸模式的阻尼方式。研究了支撑在玻璃衬底上的纳米线和悬于沟槽中的纳米线。对于悬空纳米线的液体阻尼的测量品质因数与连续介质力学计算对于无粘性流体的结果非常吻合,假设在纳米线-液体界面处的应力和位移是连续的。这表明液体阻尼是由声波辐射到介质中控制的。对于玻璃表面上的纳米线,液体阻尼的品质因数比悬空纳米线高约 60%。这归因于阴影效应。我们测量中的纳米线具有五边形的横截面。这产生了两种不同的呼吸模式,并且意味着支撑纳米线的一个面被衬底阻挡,这减少了液体的阻尼量。比较支撑和悬空的纳米线也使我们能够估计衬底对声模阻尼的影响。我们发现衬底的影响较弱,这归因于纳米线和衬底之间的机械接触不良。