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Föhlisch, AlexanderORCID iD iconorcid.org/0000-0003-4126-8233
Publications (4 of 4) Show all publications
Savchenko, V., Ekholm, V., Brumboiu, I. E., Norman, P., Pietzsch, A., Föhlisch, A., . . . Kimberg, V. (2021). Hydrogen bond effects in multimode nuclear dynamics of acetic acid observed via resonant x-ray scattering. Journal of Chemical Physics, 154(21), Article ID 214304.
Open this publication in new window or tab >>Hydrogen bond effects in multimode nuclear dynamics of acetic acid observed via resonant x-ray scattering
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2021 (English)In: Journal of Chemical Physics, ISSN 0021-9606, E-ISSN 1089-7690, Vol. 154, no 21, article id 214304Article in journal (Refereed) Published
Abstract [en]

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.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-197783 (URN)10.1063/5.0049966 (DOI)000686561400001 ()34240997 (PubMedID)
Available from: 2021-10-15 Created: 2021-10-15 Last updated: 2022-02-25Bibliographically approved
Savchenko, V., Brumboiu, I. E., Kimberg, V., Odelius, M., Krasnov, P., Liu, J.-C., . . . Ekholm, V. (2021). Vibrational resonant inelastic X-ray scattering in liquid acetic acid: a ruler for molecular chain lengths. Scientific Reports, 11(1), Article ID 4098.
Open this publication in new window or tab >>Vibrational resonant inelastic X-ray scattering in liquid acetic acid: a ruler for molecular chain lengths
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2021 (English)In: Scientific Reports, E-ISSN 2045-2322, Vol. 11, no 1, article id 4098Article in journal (Refereed) Published
Abstract [en]

Quenching of vibrational excitations in resonant inelastic X-ray scattering (RIXS) spectra of liquid acetic acid is observed. At the oxygen core resonance associated with localized excitations at the O-H bond, the spectra lack the typical progression of vibrational excitations observed in RIXS spectra of comparable systems. We interpret this phenomenon as due to strong rehybridization of the unoccupied molecular orbitals as a result of hydrogen bonding, which however cannot be observed in x-ray absorption but only by means of RIXS. This allows us to address the molecular structure of the liquid, and to determine a lower limit for the average molecular chain length.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-192469 (URN)10.1038/s41598-021-83248-3 (DOI)000621415400001 ()33602972 (PubMedID)
Available from: 2021-04-21 Created: 2021-04-21 Last updated: 2022-09-15Bibliographically approved
da Cruz, V. V., Ignatova, N., Couto, R. C., Fedotov, D. A., Rehn, D. R., Savchenko, V., . . . Kimberg, V. (2019). Nuclear dynamics in resonant inelastic X-ray scattering and X-ray absorption of methanol. Journal of Chemical Physics, 150(23), Article ID 234301.
Open this publication in new window or tab >>Nuclear dynamics in resonant inelastic X-ray scattering and X-ray absorption of methanol
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2019 (English)In: Journal of Chemical Physics, ISSN 0021-9606, E-ISSN 1089-7690, Vol. 150, no 23, article id 234301Article in journal (Refereed) Published
Abstract [en]

We report on a combined theoretical and experimental study of core-excitation spectra of gas and liquid phase methanol as obtained with the use of X-ray absorption spectroscopy (XAS) and resonant inelastic X-ray scattering (RIXS). The electronic transitions are studied with computational methods that include strict and extended second-order algebraic diagrammatic construction [ADC(2) and ADC(2)-x], restricted active space second-order perturbation theory, and time-dependent density functional theory-providing a complete assignment of the near oxygen K-edge XAS. We show that multimode nuclear dynamics is of crucial importance for explaining the available experimental XAS and RIXS spectra. The multimode nuclear motion was considered in a recently developed mixed representation where dissociative states and highly excited vibrational modes are accurately treated with a time-dependent wave packet technique, while the remaining active vibrational modes are described using Franck-Condon amplitudes. Particular attention is paid to the polarization dependence of RIXS and the effects of the isotopic substitution on the RIXS profile in the case of dissociative core-excited states. Our approach predicts the splitting of the 2a RIXS peak to be due to an interplay between molecular and pseudo-atomic features arising in the course of transitions between dissociative core- and valence-excited states. The dynamical nature of the splitting of the 2a peak in RIXS of liquid methanol near pre-edge core excitation is shown. The theoretical results are in good agreement with our liquid phase measurements and gas phase experimental data available from the literature.

National Category
Chemical Sciences Physical Sciences
Identifiers
urn:nbn:se:su:diva-171105 (URN)10.1063/1.5092174 (DOI)000472600300006 ()31228920 (PubMedID)
Available from: 2019-08-14 Created: 2019-08-14 Last updated: 2022-03-23Bibliographically approved
Ertan, E., Savchenko, V., Ignatova, N., Vaz da Cruz, V., Couto, R., Eckert, S., . . . Kimberg, V.Ultrafast dissociation features in RIXS spectra of the water molecule.
Open this publication in new window or tab >>Ultrafast dissociation features in RIXS spectra of the water molecule
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(English)Manuscript (preprint) (Other academic)
Abstract [en]

In this combined theoretical and experimental study we report on an analysis of the resonant inelastic X-ray scattering spectra (RIXS) of gas phase water via the lowest dissociative core-excited state |1sO-14a11>. We focus on the spectral feature near the dissociation limit of the electronic ground state. We show that the narrow atomic-like peak consists of the overlapping contribution from the RIXS channels  back to the ground state and to the first valence excited state |1b1-14a11> of the molecule. The spectral feature has signatures of ultrafast dissociation (UFD) in the core-excited state, as we show by means of ab initio calculations and time-dependent nuclear wave packet simulations. We show that the electronically elastic RIXS channel gives substantial contribution to the atomic-like resonance due to the strong bond length dependence of the magnitude and orientation of the transition dipole moment. By studying the RIXS for an excitation energy scan over the core-excited state resonance, we can understand and single out the molecular and atomic-like contributions in the decay to the lowest valence-excited state. Our study is complemented by a theoretical discussion of RIXS in the case of the isotope substituted water (HDO and D2O) where the nuclear dynamics is significantly affected by the heavier fragments' mass.

National Category
Atom and Molecular Physics and Optics
Research subject
Chemical Physics
Identifiers
urn:nbn:se:su:diva-154022 (URN)
Available from: 2018-03-13 Created: 2018-03-13 Last updated: 2022-02-28Bibliographically approved
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0003-4126-8233

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