We report a new method for the design of kagome lattices using zigzag-edged triangular graphene nanoflakes (TGFs) linked with B, C, N or O atoms. Using spin-polarized density functional theory we show that the electronic and magnetic properties of the designed kagome lattices can be modulated by changing their size and the linking atoms. The antiferromagnetic coupling between the two directly linked TGFs becomes ferromagnetic coupling when B, C or N is used as the linking atoms, but not for O atom linking. All the designed structures are semiconductors which can be synthesized from graphene atomic sheets by using electron etching and block copolymer lithography techniques. This study is a good example of how mathematical models can be used ...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
The discovery of graphene and its remarkable electronic and magnetic properties has initiated great ...
We study the magnetic properties of nanometer-sized graphene structures with triangular and hexagona...
Two-dimensional (2D) magnetic kagome lattices are constructed using silicon carbide triangular nanof...
Triangular graphene nanoflakes (TGFs), due to their novel magnetic configurations, can serve as buil...
We propose porous C-N-based structures for biocompatible magnetic materials that do not contain even...
Based on the first-principles evolutionary materials design, we report a stable boron Kagome lattice...
Since the discovery of the giant magnetoresistance effect, extensive research has been devoted to fi...
We investigate, using benzenoid graph theory and first-principles calculations, the magnetic propert...
Fine-tuning magnetic states by understanding topological frustration inducing magnetic mechanism sho...
Using density functional theory (DFT) we show that intrinsic ferromagnetism in two-dimensional (2D) ...
The BN sheet is a nonmagnetic wide-band-gap semiconductor. Using density functional theory, we show ...
Based on the underlying graphene lattice symmetry and an itinerant magnetism model on a bipartite la...
We explore the effect of antidot size on electronic and magnetic properties of graphene antidot latt...
Magnetic order in graphene-related structures can arise from size effects or from topological frustr...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
The discovery of graphene and its remarkable electronic and magnetic properties has initiated great ...
We study the magnetic properties of nanometer-sized graphene structures with triangular and hexagona...
Two-dimensional (2D) magnetic kagome lattices are constructed using silicon carbide triangular nanof...
Triangular graphene nanoflakes (TGFs), due to their novel magnetic configurations, can serve as buil...
We propose porous C-N-based structures for biocompatible magnetic materials that do not contain even...
Based on the first-principles evolutionary materials design, we report a stable boron Kagome lattice...
Since the discovery of the giant magnetoresistance effect, extensive research has been devoted to fi...
We investigate, using benzenoid graph theory and first-principles calculations, the magnetic propert...
Fine-tuning magnetic states by understanding topological frustration inducing magnetic mechanism sho...
Using density functional theory (DFT) we show that intrinsic ferromagnetism in two-dimensional (2D) ...
The BN sheet is a nonmagnetic wide-band-gap semiconductor. Using density functional theory, we show ...
Based on the underlying graphene lattice symmetry and an itinerant magnetism model on a bipartite la...
We explore the effect of antidot size on electronic and magnetic properties of graphene antidot latt...
Magnetic order in graphene-related structures can arise from size effects or from topological frustr...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
The discovery of graphene and its remarkable electronic and magnetic properties has initiated great ...
We study the magnetic properties of nanometer-sized graphene structures with triangular and hexagona...