Entries by sfb1083

Martinez-Castro et al.,
Commun. Mater.

Disentangling the electronic structure of an adsorbed graphene nanoring by scanning tunneling microscopy J. Martinez-Castro, R. Bolat, Q. Fan, S. Werner, H.H. Arefi, T. Esat, J. Sundermeyer, C. Wagner, J.M. Gottfried, R. Temirov, M. Ternes, F.S. Tautz Commun. Mater. 3 (2022) 57 DOI:10.1038/s43246-022-00275-x List of all SFB 1083 publications.

Topological Stone–Wales Defects Enhance Bonding and Electronic Coupling at the Graphene/Metal Interface – Publication by A4 (Gottfried) and A6 (Tonner) in ACS Nano

Benedikt Klein and coworkers of SFB 1083, together with external collaborators, have gained new insight into interfacial interactions of Stone-Wales graphene defects by using molecular models. Graphene is an astonishing two-dimensional material with diverse and technologically important properties. However, these properties are heavily dependent on topological defects, which have a […]

Klein et al.,
ACS Nano

Topological Stone–Wales Defects Enhance Bonding and Electronic Coupling at the Graphene/Metal Interface B.P. Klein, A. Ihle, S.R. Kachel, L. Ruppenthal, S.J. Hall, L. Sattler, S.M. Weber, J. Herritsch, A. Jaegermann, D. Ebeling, R.J. Maurer, G. Hilt, R. Tonner-Zech, A. Schirmeisen, J.M. Gottfried ACS Nano (2022) DOI:10.1021/acsnano.2c01952 List of all SFB […]