Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properties. Graphene ribbons with nanometre-scale widths (nanoribbons) should exhibit half-metallicity and quantum confinement. Magnetic edges in graphene nanoribbons have been studied extensively from a theoretical standpoint because their coherent manipulation would be a milestone for spintronic and quantum computing devices. However, experimental investigations have been hampered because nanoribbon edges cannot be produced with atomic precision and the graphene terminations that have been proposed are chemically unstable. Here we address both of these problems, by using molecular graphene nanoribbons functionalized with stable spin-bearing radical...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
OPEN DATA related to the research publication: Niklas Friedrich, Pedro Brandimarte, Jingcheng Li, S...
The zigzag edge of a graphene nanoribbon possesses a unique electronic state that is near the Fermi ...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
The electron spin states of zigzag graphene nanoribbon (ZGNR) edge play a pivotal role in the applic...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Development of graphene spintronic devices relies on transforming it into a material with a spin ord...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
[[abstract]]Due to the weak spin-orbit interaction and the peculiar relativistic dispersion in graph...
Graphene nanoribbons (GNRs), low-dimensional platforms for carbon-based electronics, show the promis...
"The electronic structure and spin magnetism for few-layer-graphene nanoribbons synthesized by chemi...
Modulation of orbitals in molecules or bands in materials is useful to tune the electron/spin transp...
Nanographenes with zigzag edges are predicted to manifest non-trivial π-magnetism resulting from the...
Recent outbreaks in bottom-up chemical techniques have demonstrated the synthesis of atomically perf...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
OPEN DATA related to the research publication: Niklas Friedrich, Pedro Brandimarte, Jingcheng Li, S...
The zigzag edge of a graphene nanoribbon possesses a unique electronic state that is near the Fermi ...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
The electron spin states of zigzag graphene nanoribbon (ZGNR) edge play a pivotal role in the applic...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Development of graphene spintronic devices relies on transforming it into a material with a spin ord...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
[[abstract]]Due to the weak spin-orbit interaction and the peculiar relativistic dispersion in graph...
Graphene nanoribbons (GNRs), low-dimensional platforms for carbon-based electronics, show the promis...
"The electronic structure and spin magnetism for few-layer-graphene nanoribbons synthesized by chemi...
Modulation of orbitals in molecules or bands in materials is useful to tune the electron/spin transp...
Nanographenes with zigzag edges are predicted to manifest non-trivial π-magnetism resulting from the...
Recent outbreaks in bottom-up chemical techniques have demonstrated the synthesis of atomically perf...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
OPEN DATA related to the research publication: Niklas Friedrich, Pedro Brandimarte, Jingcheng Li, S...
The zigzag edge of a graphene nanoribbon possesses a unique electronic state that is near the Fermi ...