Publication:
Solvation of coronene oligomers by para-H(2) molecules: the effects of size and shape

dc.contributor.coauthorCalvo, F.
dc.contributor.departmentDepartment of Chemistry
dc.contributor.kuauthorYurtsever, İsmail Ersin
dc.contributor.schoolcollegeinstituteCollege of Sciences
dc.date.accessioned2024-11-09T12:41:53Z
dc.date.issued2020
dc.description.abstractThe stepwise solvation of various cationic coronene oligomers bypara-hydrogen (p-H-2) molecules was computationally investigated using a united-atom model for thep-H(2)molecules and the Silvera-Goldman potential, together with a polarizable description for the interaction with the hydrocarbon molecules. A survey of the energy landscape for oligomers containing between 1 and 4 coronene molecules and possible different conformers was carried out using standard global optimization, the hydrocarbon complex being kept as rigid. The most stable structures provided the starting configuration of systematic path-integral molecular dynamics simulations at 2 K. The variations of the geometric and energetic properties of the solvation shell were determined with increasing number ofpara-hydrogen molecules. The relative stability of the solvation shell is generally found to be more robustly determined by the energy increment (or dissociation energy) than by geometrical indicators, especially when the oligomers have less ordered structures. In agreement with recent mass spectrometry experiments, the size at which the first solvation shell is complete is found to vary approximately linearly with the oligomer size when the coronene molecules stack together, with a slope that is related to the offset between two successive molecules.
dc.description.fulltextYES
dc.description.indexedbyWOS
dc.description.indexedbyScopus
dc.description.indexedbyPubMed
dc.description.issue22
dc.description.openaccessYES
dc.description.publisherscopeInternational
dc.description.sponsoredbyTubitakEuN/A
dc.description.sponsorshipN/A
dc.description.versionPublisher version
dc.description.volume22
dc.identifier.doi10.1039/d0cp01357a
dc.identifier.eissn1463-9084
dc.identifier.embargoNO
dc.identifier.filenameinventorynoIR02246
dc.identifier.issn1463-9076
dc.identifier.quartileQ2
dc.identifier.scopus2-s2.0-85086345892
dc.identifier.urihttps://doi.org/10.1039/d0cp01357a
dc.identifier.wos541863900009
dc.keywordsDensity-Functional Theory
dc.keywordsPolycyclic Aromatic-Hydrocarbons
dc.keywordsHydrogen Storage
dc.keywordsH-2 Formation
dc.keywordsAb-Initio
dc.keywordsWave-Function
dc.keywordsHelium
dc.keywordsGraphite
dc.keywordsDynamics
dc.keywordsClusters
dc.language.isoeng
dc.publisherRoyal Society of Chemistry (RSC)
dc.relation.grantnoNA
dc.relation.ispartofPhysical Chemistry Chemical Physics
dc.relation.urihttp://cdm21054.contentdm.oclc.org/cdm/ref/collection/IR/id/8885
dc.subjectChemistry
dc.subjectPhysics
dc.titleSolvation of coronene oligomers by para-H(2) molecules: the effects of size and shape
dc.typeJournal Article
dspace.entity.typePublication
local.contributor.kuauthorYurtsever, İsmail Ersin
local.publication.orgunit1College of Sciences
local.publication.orgunit2Department of Chemistry
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relation.isOrgUnitOfPublication.latestForDiscovery035d8150-86c9-4107-af16-a6f0a4d538eb
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