Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the structure of graphene nanoribbons (GNRs). Such dopants exhibit perfect alignment within GNRs and behave differently from bulk semiconductor dopants. The effect of dopant concentration on the electronic structure of GNRs, however, remains unclear despite its importance in future electronics applications. Here we use scanning tunneling microscopy and first-principles calculations to investigate the electronic structure of bottom-up synthesized <i>N</i> = 7 armchair GNRs featuring varying concentrations of boron dopants. First-principles calculations of freestanding GNRs predict that the inclusion of boron atoms into a GNR backbone should induce two...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
A fundamental requirement for the development of advanced electronic device architectures based on g...
A fundamental requirement for the development of advanced electronic device architectures based on g...
Graphene nanoribbons (GNRs) have recently attracted great interest because of their novel electronic...
High-quality graphene nanoribbons (GNRs) grown by on-surface synthesis strategies with atomic precis...
Resumen del póster presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) de...
By using the first-principles calculations, the electronic properties of graphene nanoribbon (GNR) d...
By using the first-principles calculations,the electronic properties of graphene nanoribbon (GNR) do...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
A fundamental requirement for the development of advanced electronic device architectures based on g...
A fundamental requirement for the development of advanced electronic device architectures based on g...
Graphene nanoribbons (GNRs) have recently attracted great interest because of their novel electronic...
High-quality graphene nanoribbons (GNRs) grown by on-surface synthesis strategies with atomic precis...
Resumen del póster presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) de...
By using the first-principles calculations, the electronic properties of graphene nanoribbon (GNR) d...
By using the first-principles calculations,the electronic properties of graphene nanoribbon (GNR) do...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...