6533b871fe1ef96bd12d1b93
RESEARCH PRODUCT
Effects of mechanical deformation on electronic transport through multiwall carbon nanotubes
Antonio Pantanosubject
Work (thermodynamics)Materials scienceNanotechnologyCondensed Matter Physic02 engineering and technologyCarbon nanotubeNumerical methodDeformation (meteorology)01 natural sciencesCarbon nanotubelaw.inventionElectromechanical behaviorSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineCondensed Matter::Materials ScienceElectrical transportlaw0103 physical sciencesMechanics of MaterialGeneral Materials ScienceElectronics010306 general physicsDirect analysisNanoelectromechanical systemsApplied MathematicsMechanical Engineering021001 nanoscience & nanotechnologyCondensed Matter PhysicsMechanics of MaterialsModeling and SimulationMaterials Science (all)0210 nano-technologydescription
Abstract The effects of mechanical deformation on the electron transport behavior of carbon nanotubes (CNTs) are of primary interest due to the enormous potential of nanotubes in making electronic devices and nanoelectromechanical systems (NEMS). Moreover it could help to evaluate the presence of defects or to assess the type of CNTs that were produced. Conventional atomistic simulations have a high computational expense that limits the size of the CNTs that can be studied with this technique and a direct analysis of CNTs of the dimension used in nano-electronic devices seems prohibitive at the present. Here a novel approach was designed to realize orders-of-magnitude savings in computational time in calculating the deformation-induced changes in the electrical transport properties of the nanotubes. The computational method has been validated with respect to fully atomistic simulations and in a simulation of laboratory experiments. In this work is used to investigate the electromechanical behavior of a 0.24 µm long multi wall CNT, a system with more than a million atoms.
year | journal | country | edition | language |
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2017-09-01 | International Journal of Solids and Structures |