Cuts through the manifold of molecular H2O potential energy surfaces in liquid water at ambient conditions

dc.contributor.authorPietzsch Annette
dc.contributor.authorNiskanen Johannes
dc.contributor.authorVaz da Cruz Vinicius
dc.contributor.authorBüchner Robby
dc.contributor.authorEckert Sebastian
dc.contributor.authorFondell Mattis
dc.contributor.authorJay Raphael M.
dc.contributor.authorLu Xingye
dc.contributor.authorMcNally Daniel
dc.contributor.authorSchmitt Thorsten
dc.contributor.authorFöhlisch Alexander
dc.contributor.organizationfi=materiaalitutkimuksen laboratorio|en=Materials Research Laboratory|
dc.contributor.organization-code1.2.246.10.2458963.20.15561262450
dc.converis.publication-id175778504
dc.converis.urlhttps://research.utu.fi/converis/portal/Publication/175778504
dc.date.accessioned2022-10-28T12:37:37Z
dc.date.available2022-10-28T12:37:37Z
dc.description.abstract<p>The fluctuating hydrogen bridge bonded network of liquid water at ambient conditions entails a varied ensemble of the underlying constituting H2O molecular moieties.This is mirrored in a manifold of the H2O molecular potentials. Subnatural line width resonant inelastic X-ray scattering allowed us to quantify the manifold of molecular potential energy surfaces along the H2O symmetric normal mode and the local asymmetric O–H bond coordinate up to 1 and 1.5 A, respectively. The comparison of the single ˚ H2O molecular potentials and spectroscopic signatures with the ambient conditions liquid phase H2O molecular potentials is done on various levels. In the gas phase, first principles, Morse potentials, and stepwise harmonic potential reconstruction have been employed and benchmarked. In the liquid phase the determination of the potential energy manifold along the local asymmetric O–H bond coordinate from resonant inelastic X-ray scattering via the bound state oxygen 1s to 4a1 resonance is treated within these frameworks. The potential energy surface manifold along the symmetric stretch from resonant inelastic X-ray scattering via the oxygen 1s to 2b2 resonance is based on stepwise harmonic reconstruction. We find in liquid water at ambient conditions H2O molecular potentials ranging from the weak interaction limit to strongly distorted potentials which are put into perspective to established parameters, i.e., intermolecular O–H, H–H, and O–O correlation lengths from neutron scattering.</p>
dc.identifier.jour-issn0027-8424
dc.identifier.olddbid177783
dc.identifier.oldhandle10024/160877
dc.identifier.urihttps://www.utupub.fi/handle/11111/34803
dc.identifier.urlhttps://www.pnas.org/doi/abs/10.1073/pnas.2118101119
dc.identifier.urnURN:NBN:fi-fe2022081154153
dc.language.isoen
dc.okm.affiliatedauthorNiskanen, Johannes
dc.okm.discipline114 Physical sciencesen_GB
dc.okm.discipline116 Chemical sciencesen_GB
dc.okm.discipline114 Fysiikkafi_FI
dc.okm.discipline116 Kemiafi_FI
dc.okm.internationalcopublicationinternational co-publication
dc.okm.internationalityInternational publication
dc.okm.typeA1 ScientificArticle
dc.publisherNational Academy of Sciences of USA
dc.publisher.countryUnited Statesen_GB
dc.publisher.countryYhdysvallat (USA)fi_FI
dc.publisher.country-codeUS
dc.relation.articlenumbere2118101119
dc.relation.doi10.1073/pnas.2118101119
dc.relation.ispartofjournalProceedings of the National Academy of Sciences of the United States of America
dc.relation.issue28
dc.relation.volume119
dc.source.identifierhttps://www.utupub.fi/handle/10024/160877
dc.titleCuts through the manifold of molecular H2O potential energy surfaces in liquid water at ambient conditions
dc.year.issued2022

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