Publication | Closed Access
Atomic-Scale Deformation in N-Doped Carbon Nanotubes
101
Citations
24
References
2006
Year
Tube Wall RoughnessNanosheetEngineeringN DopantGraphene NanomeshesCarbon-based MaterialHexagonal Boron NitrideNanoelectronicsNanoscale ModelingCarbon NanotubesNanomechanicsMaterials SciencePhysicsNanotechnologyQuantum ChemistryGraphene LayerNanomaterialsNatural SciencesAtomic-scale DeformationApplied PhysicsGrapheneGraphene Nanoribbon
We present the N-doping induced atomic-scale structural deformation in N-doped carbon nanotubes by using density functional theory calculations. For substitutional N-doped nanotube clusters, the N dopant with an excess electron lone pair exhibits the high negative charge, and the homogeneously distributed dopants enlarge the tube diameter in both zigzag and armchair cases. On the other hand, in pyridine-like N-doped ones, the concentrated N atoms result in a positively curved graphene layer and, thus, can be responsible for tube wall roughness and the formation of interlinked structures.
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