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单铝纳米盘的光机械特性。

Optomechanics of Single Aluminum Nanodisks.

机构信息

School of Mathematics and Statistics, University of Melbourne , Melbourne, Victoria 3010, Australia.

出版信息

Nano Lett. 2017 Apr 12;17(4):2575-2583. doi: 10.1021/acs.nanolett.7b00333. Epub 2017 Mar 28.

Abstract

Aluminum nanostructures support tunable surface plasmon resonances and have become an alternative to gold nanoparticles. Whereas gold is the most-studied plasmonic material, aluminum has the advantage of high earth abundance and hence low cost. In addition to understanding the size and shape tunability of the plasmon resonance, the fundamental relaxation processes in aluminum nanostructures after photoexcitation must be understood to take full advantage of applications such as photocatalysis and photodetection. In this work, we investigate the relaxation following ultrafast pulsed excitation and the launching of acoustic vibrations in individual aluminum nanodisks, using single-particle transient extinction spectroscopy. We find that the transient extinction signal can be assigned to a thermal relaxation of the photoexcited electrons and phonons. The ultrafast heating-induced launching of in-plane acoustic vibrations reveals moderate binding to the glass substrate and is affected by the native aluminum oxide layer. Finally, we compare the behavior of aluminum nanodisks to that of similarly prepared and sized gold nanodisks.

摘要

铝纳米结构支持可调谐的表面等离激元共振,已成为金纳米粒子的替代品。虽然金是研究最多的等离子体材料,但铝具有高地球丰度和低成本的优势。除了了解等离子体共振的尺寸和形状可调性之外,还必须理解光激发后铝纳米结构中的基本弛豫过程,以充分利用光催化和光电检测等应用。在这项工作中,我们使用单粒子瞬态消光光谱法研究了单个铝纳米盘中超快脉冲激发和声波振动的弛豫。我们发现,瞬态消光信号可归因于光激发电子和声子的热弛豫。超快加热诱导的面内声振动的发射表明与玻璃衬底的中等结合,并受天然氧化铝层的影响。最后,我们将铝纳米盘的行为与类似制备和尺寸的金纳米盘进行了比较。

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