Precise control of graphene properties is an essential step toward the realization of future graphene devices. Defects, such as individual nitrogen atoms, can strongly influence the electronic structure of graphene. Therefore, state-of-the-art characterization techniques, in conjunction with modern modeling tools, are necessary to identify these defects and fully understand the synthesized material. We have directly visualized individual substitutional nitrogen dopant atoms in graphene using scanning transmission electron microscopy and conducted complementary electron energy loss spectroscopy experiments and modeling which demonstrates the influence of the nitrogen atom on the carbon K-edge
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
Precise control of graphene properties is an essential step toward the realization of future graphen...
Single nitrogen (N) dopants in graphene are investigated using atomic-resolution scanning transmissi...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 63International audienceNitrogen-doped epitaxial graphene grown on SiC(0001̄) was prepared ...
Many potential applications of graphene require either the possibility of tuning its electronic stru...
Nitrogen-doped epitaxial graphene grown on SiC(000¯1) was prepared by exposing the surface to an ato...
A combination of scanning transmission electron microscopy, electron energy loss spectroscopy, and a...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
Precise control of graphene properties is an essential step toward the realization of future graphen...
Single nitrogen (N) dopants in graphene are investigated using atomic-resolution scanning transmissi...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 20International audienceMany potential applications of graphene require either the possibil...
cited By 63International audienceNitrogen-doped epitaxial graphene grown on SiC(0001̄) was prepared ...
Many potential applications of graphene require either the possibility of tuning its electronic stru...
Nitrogen-doped epitaxial graphene grown on SiC(000¯1) was prepared by exposing the surface to an ato...
A combination of scanning transmission electron microscopy, electron energy loss spectroscopy, and a...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...