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dc.contributor.authorJuarez Mosqueda, Rosalba
dc.contributor.authorMalola, Sami
dc.contributor.authorHäkkinen, Hannu
dc.date.accessioned2019-04-12T10:48:35Z
dc.date.available2019-04-12T10:48:35Z
dc.date.issued2019
dc.identifier.citationJuarez Mosqueda, R., Malola, S., & Häkkinen, H. (2019). Ab initio molecular dynamics studies of Au38(SR)24 isomers under heating. <i>European Physical Journal D</i>, <i>73</i>(3), Article 62. <a href="https://doi.org/10.1140/epjd/e2019-90441-5" target="_blank">https://doi.org/10.1140/epjd/e2019-90441-5</a>
dc.identifier.otherCONVID_28960174
dc.identifier.otherTUTKAID_80896
dc.identifier.urihttps://jyx.jyu.fi/handle/123456789/63479
dc.description.abstractDespite the great success in achieving monodispersity for a great number of monolayer-protected clusters, to date little is known about the dynamics of these ultra-small metal systems, their decomposition mechanisms, and the energy that separates their structural isomers. In this work, we use density functional theory (DFT) to calculate and compare the ground state energy and the Born-Oppenheimer molecular dynamics of two well-known Au 38 (SCH 2 CH 2 Ph) 24 nanocluster isomers. The aim is to shed light on the energy difference between the two clusters isomers and analyze their decomposition mechanisms triggered by high temperatures. The results demonstrate that the energy that separates the two isomers is of the same order of magnitude as the energy difference between the fcc and hcp phases of bulk gold reported earlier. Moreover, the MD simulations show disordering and eventual fragmentation of the cluster structures at high temperature which seem to proceed via spontaneous formation of Au x (SR) y polymeric chains. Hence, these results greatly contribute to understanding the possible decomposition mechanism, stability and robustness of existing and new monolayer-protected clusters.en
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherSpringer
dc.relation.ispartofseriesEuropean Physical Journal D
dc.rightsCC BY 4.0
dc.subject.othermolekyylidynamiikkafi
dc.subject.othermolecular dynamicsfi
dc.titleAb initio molecular dynamics studies of Au38(SR)24 isomers under heating
dc.typearticle
dc.identifier.urnURN:NBN:fi:jyu-201903292004
dc.contributor.laitosFysiikan laitosfi
dc.contributor.laitosKemian laitosfi
dc.contributor.laitosDepartment of Physicsen
dc.contributor.laitosDepartment of Chemistryen
dc.contributor.oppiaineNanoscience Centerfi
dc.contributor.oppiaineNanoscience Centeren
dc.type.urihttp://purl.org/eprint/type/JournalArticle
dc.date.updated2019-03-29T07:15:22Z
dc.type.coarhttp://purl.org/coar/resource_type/c_2df8fbb1
dc.description.reviewstatuspeerReviewed
dc.relation.issn1434-6060
dc.relation.numberinseries3
dc.relation.volume73
dc.type.versionpublishedVersion
dc.rights.copyright© The Author(s) 2019
dc.rights.accesslevelopenAccessfi
dc.relation.grantnumber294217
dc.subject.ysomolekyylidynamiikka
dc.subject.ysonanohiukkaset
dc.format.contentfulltext
jyx.subject.urihttp://www.yso.fi/onto/yso/p29332
jyx.subject.urihttp://www.yso.fi/onto/yso/p23451
dc.rights.urlhttps://creativecommons.org/licenses/by/4.0/
dc.relation.doi10.1140/epjd/e2019-90441-5
dc.relation.funderSuomen Akatemiafi
dc.relation.funderResearch Council of Finlanden
jyx.fundingprogramAkatemiaprofessorin tutkimuskulut, SAfi
jyx.fundingprogramResearch costs of Academy Professor, AoFen
jyx.fundinginformationOpen access funding provided by University of Jyväskylä (JYU). This work is supported by the Academy of Finland (Project 294217 and H.H. Academy Professorship). The computational resources were provided by CSC-the Finnish IT Center for Science in Espoo, Finland. We thank Satu Mustalahti for useful discussions.
dc.type.okmA1


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