Brüggemann Julia, Wolter Mario, Jacob Christoph R
Institute of Physical and Theoretical Chemistry, Technische Universität Braunschweig, Gaußstraße 17, 38106 Braunschweig, Germany.
J Chem Phys. 2022 Dec 28;157(24):244107. doi: 10.1063/5.0135273.
Computational protocols for the simulation of two-dimensional infrared (2D IR) spectroscopy usually rely on vibrational exciton models which require an empirical parameterization. Here, we present an efficient quantum-chemical protocol for predicting static 2D IR spectra that does not require any empirical parameters. For the calculation of anharmonic vibrational energy levels and transition dipole moments, we employ the localized-mode vibrational self-consistent field (L-VSCF)/vibrational configuration interaction (L-VCI) approach previously established for (linear) anharmonic theoretical vibrational spectroscopy [P. T. Panek and C. R. Jacob, ChemPhysChem 15, 3365-3377 (2014)]. We demonstrate that with an efficient expansion of the potential energy surface using anharmonic one-mode potentials and harmonic two-mode potentials, 2D IR spectra of metal carbonyl complexes and dipeptides can be predicted reliably. We further show how the close connection between L-VCI and vibrational exciton models can be exploited to extract the parameters of such models from those calculations. This provides a novel route to the fully quantum-chemical parameterization of vibrational exciton models for predicting 2D IR spectra.
二维红外(2D IR)光谱模拟的计算协议通常依赖于需要经验参数化的振动激子模型。在此,我们提出一种用于预测静态二维红外光谱的高效量子化学协议,该协议不需要任何经验参数。为了计算非谐振动能级和跃迁偶极矩,我们采用先前为(线性)非谐理论振动光谱学建立的局域模振动自洽场(L-VSCF)/振动组态相互作用(L-VCI)方法[P. T. Panek和C. R. Jacob,《化学物理化学》15,3365 - 3377(2014)]。我们证明,通过使用非谐单模势和谐波双模势对势能面进行有效展开,可以可靠地预测金属羰基配合物和二肽的二维红外光谱。我们进一步展示了如何利用L-VCI与振动激子模型之间的紧密联系,从这些计算中提取此类模型的参数。这为预测二维红外光谱的振动激子模型的完全量子化学参数化提供了一条新途径。