Applied Physics Letters · 2006 · 46 citations · 22 references
Device ModelingElectrical EngineeringEngineeringPhysicsNanoelectronicsBias Temperature InstabilityApplied PhysicsGrapheneNanotube Transistor PerformanceSingle VacancyNanocomputingCarbon Nanotube TransistorsThree-dimensional PoissonDefect ToleranceCharge TransportCarbon NanotubesSemiconductor DeviceMicroelectronics
We study the effect of vacancies and charged impurities on the performance of carbon nanotube transistors by self-consistently solving the three-dimensional Poisson and Schrödinger equations. We find that a single vacancy or charged impurity can decrease the drive current by more than 25% from the ballistic current. The threshold voltage shift in the case of charged impurities can be as large as 40mV.
22
Direct evidence for atomic defects in graphene layers
Ayako Hashimoto, Kazu Suenaga, Alexandre Gloter et al. · Nature · 2004 · 1.7K citations
Carbon Nanotube Inter- and Intramolecular Logic Gates
Vincent Derycke, Richard Martel, Joerg Appenzeller et al. · Nano Letters · 2001 · 1K citations
Structure and energetics of the vacancy in graphite
A.A. El-Barbary, R. H. Telling, Chris Ewels et al. · Physical review. B, Condensed matter · 2003 · 574 citations