Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.
Department of Physics, Temple University, Philadelphia, Pennsylvania 19122, United States.
J Phys Chem B. 2022 Aug 25;126(33):6113-6124. doi: 10.1021/acs.jpcb.2c02178. Epub 2022 Jul 18.
Sum-frequency generation (SFG) spectroscopy provides a unique optical probe for interfacial molecules with interface-specificity and molecular specificity. SFG measurements can be further carried out at different polarization combinations, but the target of the polarization-dependent SFG is conventionally limited to investigating the molecular orientation. Here, we explore the possibility of polarization-dependent SFG (PD-SFG) measurements with heterodyne detection (HD-PD-SFG). We stress that HD-PD-SFG enables accurate determination of the peak amplitude, a key factor of the PD-SFG data. Subsequently, we outline that HD-PD-SFG can be used not only for estimating the molecular orientation but also for investigating the interfacial dielectric profile and studying the depth profile of molecules. We further illustrate the variety of combined simulation and PD-SFG studies.
和频发生(SFG)光谱学为界面分子提供了一种独特的光学探针,具有界面特异性和分子特异性。SFG 测量可以进一步在不同的偏振组合下进行,但传统上偏振相关 SFG(PD-SFG)的目标仅限于研究分子取向。在这里,我们探索了具有外差检测(HD-PD-SFG)的偏振相关 SFG(PD-SFG)测量的可能性。我们强调,HD-PD-SFG 可以准确确定峰值幅度,这是 PD-SFG 数据的关键因素。随后,我们概述了 HD-PD-SFG 不仅可用于估计分子取向,还可用于研究界面介电轮廓和研究分子的深度分布。我们进一步说明了组合模拟和 PD-SFG 研究的多样性。