Savchenko Viktoriia, Ekholm Victor, Brumboiu Iulia Emilia, Norman Patrick, Pietzsch Annette, Föhlisch Alexander, Rubensson Jan-Erik, Gråsjö Johan, Björneholm Olle, Såthe Conny, Dong Minjie, Schmitt Thorsten, McNally Daniel, Lu Xingye, Krasnov Pavel, Polyutov Sergey P, Gel'mukhanov Faris, Odelius Michael, Kimberg Victor
Department of Theoretical Chemistry and Biology, KTH Royal Institute of Technology, SE-106 91 Stockholm, Sweden.
Department of Physics and Astronomy, Uppsala University, P.O. Box 516, SE-751 20 Uppsala, Sweden.
J Chem Phys. 2021 Jun 7;154(21):214304. doi: 10.1063/5.0049966.
A theoretical and experimental study of the gas phase and liquid acetic acid based on resonant inelastic x-ray scattering (RIXS) spectroscopy is presented. We combine and compare different levels of theory for an isolated molecule for a comprehensive analysis, including electronic and vibrational degrees of freedom. The excitation energy scan over the oxygen K-edge absorption reveals nuclear dynamic effects in the core-excited and final electronic states. The theoretical simulations for the monomer and two different forms of the dimer are compared against high-resolution experimental data for pure liquid acetic acid. We show that the theoretical model based on a dimer describes the hydrogen bond formation in the liquid phase well and that this bond formation sufficiently alters the RIXS spectra, allowing us to trace these effects directly from the experiment. Multimode vibrational dynamics is accounted for in our simulations by using a hybrid time-dependent stationary approach for the quantum nuclear wave packet simulations, showing the important role it plays in RIXS.
本文介绍了基于共振非弹性X射线散射(RIXS)光谱对气相和液态乙酸的理论与实验研究。我们结合并比较了孤立分子不同层次的理论,以进行全面分析,包括电子和振动自由度。对氧K边吸收的激发能扫描揭示了核心激发态和最终电子态中的核动力学效应。将单体和两种不同形式二聚体的理论模拟与纯液态乙酸的高分辨率实验数据进行了比较。我们表明,基于二聚体的理论模型能够很好地描述液相中的氢键形成,并且这种键的形成充分改变了RIXS光谱,使我们能够直接从实验中追踪这些效应。在我们的模拟中,通过使用混合时间相关定态方法进行量子核波包模拟来考虑多模振动动力学,展示了其在RIXS中所起的重要作用。