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分子光机械诱导软物质填充等离子纳米腔的混合特性。

Molecular Optomechanics Induced Hybrid Properties in Soft Materials Filled Plasmonic Nanocavities.

出版信息

Nano Lett. 2023 Jun 14;23(11):5108-5115. doi: 10.1021/acs.nanolett.3c01035. Epub 2023 May 24.

Abstract

The optomechanical interaction between nanocavity plasmons and molecular vibrations can result in interfacial phenomena that can be tailored for sensing and photocatalytic applications. Here, we report for the first time that plasmon-vibration interaction can induce laser-plasmon detuning dependent plasmon resonance linewidth broadening, indicating energy transfer from the plasmon field to collective vibrational modes. The linewidth broadening accompanied by the large enhancement of the Raman scattering signal is observed as the laser-plasmon blue-detuning approaches the CH vibrational frequency of the molecular systems integrated in gold nanorod-on-mirror nanocavities. The experimental observations can be explained based on the molecular optomechanics theory that predicts dynamical backaction amplification of the vibrational modes and high sensitivity of Raman scattering when the plasmon resonance overlaps with the Raman emission frequency. The results presented here suggest that molecular optomechanics coupling may be manipulated for creating hybrid properties based on interactions between molecular oscillators and nanocavity electromagnetic optical modes.

摘要

纳米腔等离子体激元和分子振动之间的光机械相互作用可以导致界面现象,这些现象可以针对传感和光催化应用进行定制。在这里,我们首次报道了等离子体-振动相互作用可以诱导激光-等离子体失谐依赖的等离子体共振线宽展宽,表明能量从等离子体场转移到集体振动模式。当激光-等离子体蓝移接近集成在金纳米棒-镜纳米腔中的分子系统的 CH 振动频率时,观察到线宽展宽伴随着拉曼散射信号的大幅增强。实验观察可以根据分子光机械学理论来解释,该理论预测了当等离子体共振与拉曼发射频率重叠时,振动模式的动力学背向放大和拉曼散射的高灵敏度。这里呈现的结果表明,分子光机械学耦合可以通过分子振荡器和纳米腔电磁光学模式之间的相互作用来操纵,以创建混合特性。

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