电场
化学
拉曼散射
分子物理学
拉曼光学活性
领域(数学)
化学物理
拉曼光谱
电磁场
硫酚
散射
分子振动
分子
分析化学(期刊)
光学
物理
数学
有机化学
色谱法
量子力学
药物化学
纯数学
作者
Sharath Sriram,Madhu Bhaskaran,Shijian Chen,Sasani Jayawardhana,Paul R. Stoddart,Jefferson Zhe Liu,Nikhil V. Medhekar,Kourosh Kalantar‐zadeh,Arnan Mitchell
摘要
The fundamental mechanism proposed to explain surface-enhanced Raman scattering (SERS) relies on electromagnetic field enhancement at optical frequencies. In this work, we demonstrate the use of microfabricated, silver nanotextured electrode pairs to study, in situ, the influence of low frequency (5 mHz to 1 kHz) oscillating electric fields on the SERS spectra of thiophenol. This applied electric field is shown to affect SERS peak intensities and influence specific vibrational modes of the analyte. The applied electric field perturbs the polar analyte, thereby altering the scattering cross section. Peaks related to the sulfurous bond which binds the molecule to the silver nanotexture exhibit strong and distinguishable responses to the applied field, due to varying bending and stretching mechanics. Density functional theory simulations are used to qualitatively verify the experimental observations. Our experimental and simulation results demonstrate that the SERS spectral changes relate to electric field induced molecular reorientation, with dependence on applied field strength and frequency. This demonstration creates new opportunities for external dynamic tuning and multivariate control of SERS measurements.
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