Surface energies, adhesion energies, and exfoliation energies relevant to copper-graphene and copper-graphite systems

dc.contributor.author Thiel, Patricia
dc.contributor.author Lai, King
dc.contributor.author Lii-Rosales, Ann
dc.contributor.author Tringides, Michael
dc.contributor.author Evans, James
dc.contributor.author Thiel, Patricia
dc.contributor.author Evans, James
dc.contributor.department Ames National Laboratory
dc.contributor.department Physics and Astronomy
dc.contributor.department Materials Science and Engineering
dc.contributor.department Chemistry
dc.date 2019-08-23T13:47:06.000
dc.date.accessioned 2020-06-30T01:16:38Z
dc.date.available 2020-06-30T01:16:38Z
dc.date.copyright Tue Jan 01 00:00:00 UTC 2019
dc.date.embargo 2021-01-24
dc.date.issued 2019-01-24
dc.description.abstract <p>We have generated precise values for several key energies that are relevant to Cu-graphene or Cu-graphite systems. Such systems may find technological applications that range from graphene synthesis, to condensation heat transfer, to electrical contacts to graphene, to composites. Using density functional theory, we have calculated surface energies of the three low-index faces of bulk Cu. We find that these surface energies, calculated with the PBEsol functional, are significantly higher than with the more common PBE functional and agree more closely with experiment. We have also calculated the surface energies of graphene and graphite, the exfoliation energy between graphene and graphite, and the adhesion energies between graphene or graphite and a Cu(111) slab. The adhesion energy between a carbon layer and Cu(111) is close to the exfoliation energy and cleavage energy of graphite, the four sets of values spanning a range of only 0.394 to 0.456 J/m2. Our results are consistent with the earlier experimental observation of three-dimensional growth of Cu on top of graphite. The energies are also used to perform a continuum Winterbottom analysis and also discrete (atomistic) variants to predict the equilibrium shapes of Cu particles supported on graphite.</p>
dc.description.comments <p>This is a manuscript of an article published as Han, Yong, King C. Lai, Ann Lii-Rosales, Michael C. Tringides, James W. Evans, and Patricia A. Thiel. "Surface energies, adhesion energies, and exfoliation energies relevant to copper-graphene and copper-graphite systems." <em>Surface Science</em> (2019). DOI: <a href="http://dx.doi.org/10.1016/j.susc.2019.01.009" target="_blank">10.1016/j.susc.2019.01.009</a>. Posted with permission.</p>
dc.format.mimetype application/pdf
dc.identifier archive/lib.dr.iastate.edu/chem_pubs/1102/
dc.identifier.articleid 2105
dc.identifier.contextkey 13728043
dc.identifier.s3bucket isulib-bepress-aws-west
dc.identifier.submissionpath chem_pubs/1102
dc.identifier.uri https://dr.lib.iastate.edu/handle/20.500.12876/14404
dc.language.iso en
dc.source.bitstream archive/lib.dr.iastate.edu/chem_pubs/1102/2019_Thiel_SurfaceEnergies.pdf|||Fri Jan 14 18:40:39 UTC 2022
dc.source.uri 10.1016/j.susc.2019.01.009
dc.subject.disciplines Condensed Matter Physics
dc.subject.disciplines Materials Chemistry
dc.title Surface energies, adhesion energies, and exfoliation energies relevant to copper-graphene and copper-graphite systems
dc.type article
dc.type.genre article
dspace.entity.type Publication
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