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模拟超分子结构的手性和频产生响应需要振动耦合。

Simulation of the Chiral Sum Frequency Generation Response of Supramolecular Structures Requires Vibrational Couplings.

机构信息

Department of Chemistry, Yale University, New Haven, Connecticut 06520, United States.

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520, United States.

出版信息

J Phys Chem B. 2021 Nov 4;125(43):12072-12081. doi: 10.1021/acs.jpcb.1c06360. Epub 2021 Oct 26.

Abstract

Chiral vibrational sum frequency generation (SFG) spectroscopy probes the structure of the solvation shell around chiral macromolecules. The dominant theoretical framework for understanding the origin of chiral SFG signals is based on the analysis of molecular symmetry, which assumes no interaction between molecules. However, water contains strong intermolecular interactions that significantly affect its properties. Here, the role of intermolecular vibrational coupling in the chiral SFG response of the O-H stretch of water surrounding an antiparallel β-sheet at the vacuum-water interface is investigated. Both intramolecular and intermolecular couplings between O-H groups are required to simulate the full lineshape of the chiral SFG signal. This dependence is also observed for a chiral water dimer, illustrating that this phenomenon is not specific to larger systems. We also find that a dimer of C molecules predicted to be chirally SFG-inactive by the symmetry-based theory can generate a chiral SFG signal when intermolecular couplings are considered, suggesting that even highly symmetric solvent molecules may produce chiral SFG signals when interacting with a chiral solute. The consideration of intermolecular couplings extends the prevailing theory of the chiral SFG response to structures larger than individual molecules and provides guidelines for future modeling.

摘要

手性振动和频产生(SFG)光谱探测手性大分子周围溶剂壳的结构。理解手性 SFG 信号起源的主要理论框架基于分子对称性的分析,该分析假设分子之间没有相互作用。然而,水中含有很强的分子间相互作用,这会显著影响其性质。在这里,研究了在真空-水界面上反平行β-折叠周围水分子的 O-H 伸缩振动的手性 SFG 响应中分子间振动耦合的作用。模拟手性 SFG 信号的全线形需要 O-H 基团的分子内和分子间耦合。对于手性水分子二聚体也观察到了这种依赖性,说明这种现象不仅限于更大的系统。我们还发现,当考虑分子间耦合时,预测由基于对称性的理论在手性 SFG 中为非活性的 C 分子二聚体可以产生手性 SFG 信号,这表明即使是高度对称的溶剂分子在与手性溶质相互作用时也可能产生手性 SFG 信号。分子间耦合的考虑将手性 SFG 响应的主流理论扩展到大于单个分子的结构,并为未来的建模提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0eed/9059521/112334c582ac/nihms-1797901-f0002.jpg

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