Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Pristine h-BN supercell used as the host reference for defect calculations.
1 characterization1 figure
Simulated Supercell Dfth-BNStudied Material
Supercell containing a single carbon substitutional defect on a boron site in h-BN.
1 characterization1 figure
Simulated Supercell DftCBStudied Materialh-BNStudied Material
Supercell containing a single carbon substitutional defect on a nitrogen site in h-BN.
1 characterization1 figure
Simulated Supercell DftCNStudied Materialh-BNStudied Material
Supercell containing a non-adjacent CB-CB carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B₂N?Studied Materialh-BNStudied Material
Supercell containing a non-adjacent CN-CN carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B?N2?Studied Materialh-BNStudied Material
Specific carbon dimer defect in h-BN for which the paper reports a zero-phonon line near 2.5 eV and a triplet state nearly 0.5 eV more stable than the singlet.
1 characterization2 properties1 figure
Simulated Supercell DftC₂B?N?Studied Materialh-BNStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Pristine h-BN supercell used as the host reference for defect calculations.
1 characterization1 figure
Simulated Supercell Dfth-BNStudied Material
Supercell containing a single carbon substitutional defect on a boron site in h-BN.
1 characterization1 figure
Simulated Supercell DftCBStudied Materialh-BNStudied Material
Supercell containing a single carbon substitutional defect on a nitrogen site in h-BN.
1 characterization1 figure
Simulated Supercell DftCNStudied Materialh-BNStudied Material
Supercell containing a non-adjacent CB-CB carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B₂N?Studied Materialh-BNStudied Material
Supercell containing a non-adjacent CN-CN carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B?N2?Studied Materialh-BNStudied Material
Specific carbon dimer defect in h-BN for which the paper reports a zero-phonon line near 2.5 eV and a triplet state nearly 0.5 eV more stable than the singlet.
1 characterization2 properties1 figure
Simulated Supercell DftC₂B?N?Studied Materialh-BNStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Pristine h-BN supercell used as the host reference for defect calculations.
1 characterization1 figure
Simulated Supercell Dfth-BNStudied Material
Supercell containing a single carbon substitutional defect on a boron site in h-BN.
1 characterization1 figure
Simulated Supercell DftCBStudied Materialh-BNStudied Material
Supercell containing a single carbon substitutional defect on a nitrogen site in h-BN.
1 characterization1 figure
Simulated Supercell DftCNStudied Materialh-BNStudied Material
Supercell containing a non-adjacent CB-CB carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B₂N?Studied Materialh-BNStudied Material
Supercell containing a non-adjacent CN-CN carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B?N2?Studied Materialh-BNStudied Material
Specific carbon dimer defect in h-BN for which the paper reports a zero-phonon line near 2.5 eV and a triplet state nearly 0.5 eV more stable than the singlet.
1 characterization2 properties1 figure
Simulated Supercell DftC₂B?N?Studied Materialh-BNStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Pristine h-BN supercell used as the host reference for defect calculations.
1 characterization1 figure
Simulated Supercell Dfth-BNStudied Material
Supercell containing a single carbon substitutional defect on a boron site in h-BN.
1 characterization1 figure
Simulated Supercell DftCBStudied Materialh-BNStudied Material
Supercell containing a single carbon substitutional defect on a nitrogen site in h-BN.
1 characterization1 figure
Simulated Supercell DftCNStudied Materialh-BNStudied Material
Supercell containing a non-adjacent CB-CB carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B₂N?Studied Materialh-BNStudied Material
Supercell containing a non-adjacent CN-CN carbon dimer defect in h-BN.
1 characterization1 figure
Simulated Supercell DftC₂B?N2?Studied Materialh-BNStudied Material
Specific carbon dimer defect in h-BN for which the paper reports a zero-phonon line near 2.5 eV and a triplet state nearly 0.5 eV more stable than the singlet.
1 characterization2 properties1 figure
Simulated Supercell DftC₂B?N?Studied Materialh-BNStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.