Graphene layers placed on SrTiO3 single-crystal substrates, i.e., templates for remote epitaxy of functional oxide membranes, were investigated using temperature-dependent confocal Raman spectroscopy. This approach successfully resolved distinct Raman modes of graphene that are often untraceable in conventional measurements with non-confocal optics due to the strong Raman scattering background of SrTiO3. Information on defects and strain states was obtained for a few graphene/SrTiO3 samples that were synthesized by different techniques. This confocal Raman spectroscopic approach can shed light on the investigation of not only this graphene/SrTiO3 system but also various two-dimensional layered materials whose Raman modes interfere with their substrates.
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Shrestha, S. ; Krautloher, M. ; Zhu, M. ; Kim, J. ; Hwang, J. ; Kim, J. ; Kim, J.-W. ; Keimer, B. ; Seo, A. ( , Physical Review B)
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Seo, A. ; Boris, A. V. ; Cristiani, G. ; Habermeier, H. -U. ; Keimer, B. ( , Physical Review B)
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Souri, M. ; Terzic, J. ; Johnson, J. M. ; Connell, J. G. ; Gruenewald, J. H. ; Thompson, J. ; Brill, J. W. ; Hwang, J. ; Cao, G. ; Seo, A. ( , Physical Review Materials)
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Souri, M. ; Kim, B. H. ; Gruenewald, J. H. ; Connell, J. G. ; Thompson, J. ; Nichols, J. ; Terzic, J. ; Min, B. I. ; Cao, G. ; Brill, J. W. ; et al ( , Physical Review B)
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Souri, M. ; Connell, J. G. ; Nichols, J. ; Terzic, J. ; Cao, G. ; Seo, A. ( , Journal of Applied Physics)