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Topological phase transition in chiral graphene nanoribbons: from edge  bands to end states | Nature Communications
Topological phase transition in chiral graphene nanoribbons: from edge bands to end states | Nature Communications

Graphene Quantum Dots (GQDs) for Bioimaging and Drug Delivery Applications:  A Review | ACS Materials Letters
Graphene Quantum Dots (GQDs) for Bioimaging and Drug Delivery Applications: A Review | ACS Materials Letters

Giant orbital magnetoelectric effect and current-induced magnetization  switching in twisted bilayer graphene | Nature Communications
Giant orbital magnetoelectric effect and current-induced magnetization switching in twisted bilayer graphene | Nature Communications

Edge magnetism of triangular graphene nanoflakes embedded in hexagonal  boron nitride - ScienceDirect
Edge magnetism of triangular graphene nanoflakes embedded in hexagonal boron nitride - ScienceDirect

Topological superconductivity in a van der Waals heterostructure | Nature
Topological superconductivity in a van der Waals heterostructure | Nature

PDF] Zero-energy states of graphene triangular quantum dots in a magnetic  field | Semantic Scholar
PDF] Zero-energy states of graphene triangular quantum dots in a magnetic field | Semantic Scholar

PDF] Zero-energy states of graphene triangular quantum dots in a magnetic  field | Semantic Scholar
PDF] Zero-energy states of graphene triangular quantum dots in a magnetic field | Semantic Scholar

Edge magnetization in chiral graphene nanoribbons and quantum anomalous  Hall effect interfaces in graphene - GRIN
Edge magnetization in chiral graphene nanoribbons and quantum anomalous Hall effect interfaces in graphene - GRIN

Magnetism of graphene quantum dots | npj Quantum Materials
Magnetism of graphene quantum dots | npj Quantum Materials

Edge carboxylation-induced charge separation dynamics of graphene quantum  dot/cellulose nanocomposites - ScienceDirect
Edge carboxylation-induced charge separation dynamics of graphene quantum dot/cellulose nanocomposites - ScienceDirect

Room-temperature magnetism and tunable energy gaps in edge-passivated  zigzag graphene quantum dots | npj 2D Materials and Applications
Room-temperature magnetism and tunable energy gaps in edge-passivated zigzag graphene quantum dots | npj 2D Materials and Applications

a), b) Magnetization in the ferromagnetically aligned (FM)... | Download  Scientific Diagram
a), b) Magnetization in the ferromagnetically aligned (FM)... | Download Scientific Diagram

Materials | Free Full-Text | Biomedical Applications of Carbon  Nanomaterials: Fullerenes, Quantum Dots, Nanotubes, Nanofibers, and Graphene
Materials | Free Full-Text | Biomedical Applications of Carbon Nanomaterials: Fullerenes, Quantum Dots, Nanotubes, Nanofibers, and Graphene

Photonics | Free Full-Text | Properties of Bilayer Graphene Quantum Dots  for Integrated Optics: An Ab Initio Study
Photonics | Free Full-Text | Properties of Bilayer Graphene Quantum Dots for Integrated Optics: An Ab Initio Study

Color online) Bilayer triangular graphene quantum dot with zigzag... |  Download Scientific Diagram
Color online) Bilayer triangular graphene quantum dot with zigzag... | Download Scientific Diagram

PDF] Zero-energy states of graphene triangular quantum dots in a magnetic  field | Semantic Scholar
PDF] Zero-energy states of graphene triangular quantum dots in a magnetic field | Semantic Scholar

Visualization and Manipulation of Bilayer Graphene Quantum Dots with Broken  Rotational Symmetry and Nontrivial Topology | Nano Letters
Visualization and Manipulation of Bilayer Graphene Quantum Dots with Broken Rotational Symmetry and Nontrivial Topology | Nano Letters

Graphene-mediated ferromagnetic coupling in the nickel nano-islands/graphene  hybrid | Science Advances
Graphene-mediated ferromagnetic coupling in the nickel nano-islands/graphene hybrid | Science Advances

Nanomaterials | Free Full-Text | Single-Electron Transport and Detection of Graphene  Quantum Dots
Nanomaterials | Free Full-Text | Single-Electron Transport and Detection of Graphene Quantum Dots

Symmetry-controlled edge states in the type-II phase of Dirac photonic  lattices | Nature Communications
Symmetry-controlled edge states in the type-II phase of Dirac photonic lattices | Nature Communications

Triangular graphene quantum dot with armchair edges (here, N0 = 3 and N...  | Download Scientific Diagram
Triangular graphene quantum dot with armchair edges (here, N0 = 3 and N... | Download Scientific Diagram

a) Potential distribution in a quantum dot with R=47.5nm. The black... |  Download Scientific Diagram
a) Potential distribution in a quantum dot with R=47.5nm. The black... | Download Scientific Diagram

A computational investigation of 11B and 15N chemical shielding tensors as  well as local aromaticity based on NICS characterization in the N/B doped triangular  graphene quantum dots - ScienceDirect
A computational investigation of 11B and 15N chemical shielding tensors as well as local aromaticity based on NICS characterization in the N/B doped triangular graphene quantum dots - ScienceDirect