Fine-tuning magnetic states by understanding topological frustration inducing magnetic mechanism should allow greater flexibility for the design of graphene-based spintronics. Based on first-principles calculations, it is predicted that bowtie-shaped graphene nanoflake (GNF) is of spin-polarized ground state exhibiting antiferromagnetic (AFM) ordering between two individual triangular GNFs. It is demonstrated that strength of antiferromagnetic coupling of both symmetric and asymmetric bowtie-shaped GNF displays strong zero-energy-state-orientated behavior due to non-trivial nature of topological frustration, with implications for designing graphene nanostructures with predefined magnetic states. It also proposes a specific example of struct...
Graphene nanomeshes are the nanostructures consisting of graphene flake with a regular pattern of an...
We report a new method for the design of kagome lattices using zigzag-edged triangular graphene nano...
Journal ArticleUsing first-principles calculations, we show that nanopatterned graphite films (NPGFs...
We investigate, using benzenoid graph theory and first-principles calculations, the magnetic propert...
Magnetic order in graphene-related structures can arise from size effects or from topological frustr...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
Based on the underlying graphene lattice symmetry and an itinerant magnetism model on a bipartite la...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
Triangular graphene nanoflakes (TGFs), due to their novel magnetic configurations, can serve as buil...
The electronic properties of a bilayer graphene nanoflake (BLGNF) depend sensitively upon the streng...
proposed a strategy for constructing graphene fragments (nanoflakes) with large electron spin magnet...
The magnetic properties of graphene-graphane superlattices with zigzag interfaces and separately var...
| openaire: EC/H2020/785219/EU//GrapheneCore2 | openaire: EC/H2020/696656/EU//GrapheneCore1 | openai...
OPEN DATA related to the research publication: Niklas Friedrich, Pedro Brandimarte, Jingcheng Li, S...
The discovery of graphene and its remarkable electronic and magnetic properties has initiated great ...
Graphene nanomeshes are the nanostructures consisting of graphene flake with a regular pattern of an...
We report a new method for the design of kagome lattices using zigzag-edged triangular graphene nano...
Journal ArticleUsing first-principles calculations, we show that nanopatterned graphite films (NPGFs...
We investigate, using benzenoid graph theory and first-principles calculations, the magnetic propert...
Magnetic order in graphene-related structures can arise from size effects or from topological frustr...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
Based on the underlying graphene lattice symmetry and an itinerant magnetism model on a bipartite la...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
Triangular graphene nanoflakes (TGFs), due to their novel magnetic configurations, can serve as buil...
The electronic properties of a bilayer graphene nanoflake (BLGNF) depend sensitively upon the streng...
proposed a strategy for constructing graphene fragments (nanoflakes) with large electron spin magnet...
The magnetic properties of graphene-graphane superlattices with zigzag interfaces and separately var...
| openaire: EC/H2020/785219/EU//GrapheneCore2 | openaire: EC/H2020/696656/EU//GrapheneCore1 | openai...
OPEN DATA related to the research publication: Niklas Friedrich, Pedro Brandimarte, Jingcheng Li, S...
The discovery of graphene and its remarkable electronic and magnetic properties has initiated great ...
Graphene nanomeshes are the nanostructures consisting of graphene flake with a regular pattern of an...
We report a new method for the design of kagome lattices using zigzag-edged triangular graphene nano...
Journal ArticleUsing first-principles calculations, we show that nanopatterned graphite films (NPGFs...