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利用等离子体金纳米颗粒实现表面稳态分子冷却

Ostensible Steady-State Molecular Cooling with Plasmonic Gold Nanoparticles.

作者信息

Yu Ziwei, Frontiera Renee R

机构信息

Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, United States.

出版信息

ACS Nano. 2023 Mar 14;17(5):4306-4314. doi: 10.1021/acsnano.2c08630. Epub 2023 Mar 3.

Abstract

The optical and chemical properties of plasmonic materials have sparked extensive research in exploring their applications in various areas such as photocatalysts, chemical sensors, and photonic devices. However, complicated plasmon-molecule interactions have posed substantial obstacles for the development of plasmonic material-based technologies. Quantifying plasmon-molecule energy transfer processes is a crucial step to understand the complex interplay between plasmonic materials and molecules. Here we report an anomalous steady-state reduction in the anti-Stokes to Stokes surface-enhanced Raman spectroscopy (SERS) scattering intensity ratio of aromatic thiols adsorbed on plasmonic gold nanoparticles under continuous-wave laser irradiation. The observed reduction of the scattering intensity ratio is closely related to the excitation wavelength, the surrounding media, and component of the plasmonic substrates used. Moreover, we observed a similar extent of scattering intensity ratio reduction with a range of aromatic thiols and under different external temperatures. Our discovery implies that there are either unexplained wavelength-dependent SERS outcoupling effects, or some unrecognized plasmon-molecule interactions which lead to a nanoscale plasmon refrigerator for molecules. This effect should be taken into consideration for the design of plasmonic catalysts and plasmonic photonic devices. Moreover, it could be useful for cooling large molecules under ambient conditions.

摘要

等离子体材料的光学和化学性质引发了广泛研究,以探索其在光催化剂、化学传感器和光子器件等各个领域的应用。然而,复杂的等离子体-分子相互作用给基于等离子体材料的技术发展带来了巨大障碍。量化等离子体-分子能量转移过程是理解等离子体材料与分子之间复杂相互作用的关键一步。在此,我们报道了在连续波激光照射下,吸附在等离子体金纳米颗粒上的芳香族硫醇的反斯托克斯与斯托克斯表面增强拉曼光谱(SERS)散射强度比出现异常稳态降低。观察到的散射强度比降低与激发波长、周围介质以及所用等离子体基底的成分密切相关。此外,我们在一系列芳香族硫醇以及不同外部温度下观察到了类似程度的散射强度比降低。我们的发现意味着存在尚未解释的波长依赖性SERS外耦合效应,或者一些未被认识到的等离子体-分子相互作用,这导致了分子的纳米级等离子体冰箱。在设计等离子体催化剂和等离子体光子器件时应考虑这种效应。此外,它可能有助于在环境条件下冷却大分子。

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