Scuola Normale Superiore, Piazza dei Cavalieri 7, Pisa, Italy.
Phys Chem Chem Phys. 2019 Feb 20;21(8):4224-4239. doi: 10.1039/c8cp06514d.
We present a comprehensive methodology for the analysis and interpretation of vibrational circular dichroism spectra supported by novel graphical representations. The tools rely on the vibrational transition current density (VTCD) associated with a molecular vibration, whose visualization allows exploration of the physical origin of the electronic contribution to the electric and magnetic vibrational dipole transition moments. Different ways of visualizing VTCD from 2D maps to 3D representations are reported and applied to molecular systems of growing complexity. An extension of the VTCD analysis to fully anharmonic spectra within the second-order vibrational perturbation theory (VPT2) is discussed. The analysis is applied to different types of chiral systems: the doubly deuterated oxirane (2S,3S)-oxirane-d2, taken as a reference to validate our implementation; 1,3-difluoroallene, a simple rigid system to explore the application of VTCD to anharmonic VCD spectra. Finally, the analysis of VTCD has been used to better understand the origin of the signal enhancement in peptides linked to the ferrocene groups. The merits and shortcomings of the methods are discussed, and some perspectives for future developments are offered.
我们提出了一种全面的方法来分析和解释振动圆二色性光谱,该方法得到了新颖的图形表示的支持。这些工具依赖于与分子振动相关的振动跃迁电流密度(VTCD),其可视化允许探索电子对电和磁振动偶极跃迁矩的贡献的物理起源。报告了从 2D 图谱到 3D 表示的不同 VTCD 可视化方法,并将其应用于越来越复杂的分子系统。讨论了将 VTCD 分析扩展到二阶振动微扰理论(VPT2)中的完全非谐光谱的方法。该分析应用于不同类型的手性体系:双氘代环氧乙烷(2S,3S)-环氧乙烷-d2,用作验证我们实现的参考;1,3-二氟丙烯,一种简单的刚性体系,用于探索 VTCD 在非谐 VCD 光谱中的应用。最后,分析了 VTCD 以更好地理解与二茂铁基团相连的肽中信号增强的起源。讨论了这些方法的优缺点,并提出了一些未来发展的观点。