2003
Magnetically aligned single wall carbon nanotube films: Preferred orientation and anisotropic transport properties
Fischer J, Zhou W, Vavro J, Llaguno M, Guthy C, Haggenmueller R, Casavant M, Walters D, Smalley R. Magnetically aligned single wall carbon nanotube films: Preferred orientation and anisotropic transport properties. Journal Of Applied Physics 2003, 93: 2157-2163. DOI: 10.1063/1.1536733.Peer-Reviewed Original ResearchMagnetic fieldLarge magnetic fieldsStrong magnetic fieldSingle-wall carbon nanotubesAnisotropic transport propertiesSignificant field dependenceField dependenceTransport propertiesWall carbon nanotubesPlane preferred orientationComplete texture analysisPreferred orientationCarbon nanotubesT fieldHigh fieldsThermal conductivitySimple modelField-induced alignmentDeposition processThick filmsAnisotropic propertiesFilter depositionSWNT materialFieldTexture parametersThermoelectric Power of p-Doped Single-Wall Carbon Nanotubes and the Role of Phonon Drag
Vavro J, Llaguno M, Fischer J, Ramesh S, Saini R, Ericson L, Davis V, Hauge R, Pasquali M, Smalley R. Thermoelectric Power of p-Doped Single-Wall Carbon Nanotubes and the Role of Phonon Drag. Physical Review Letters 2003, 90: 065503. PMID: 12633300, DOI: 10.1103/physrevlett.90.065503.Peer-Reviewed Original Research
2002
Carbon nanotube composites for thermal management
Biercuk M, Llaguno M, Radosavljevic M, Hyun J, Johnson A, Fischer J. Carbon nanotube composites for thermal management. Applied Physics Letters 2002, 80: 2767-2769. DOI: 10.1063/1.1469696.Peer-Reviewed Original ResearchSingle-wall carbon nanotubesThermal transport propertiesCarbon nanotubesThermal managementMechanical propertiesThermal conductivityVickers hardnessCarbon fiberSWNT loadingIndustrial epoxyPercolation thresholdElectrical conductivity dataSWNT materialTransport propertiesRoom temperatureNanotubesLoadingConductivity dataWtCompositesEpoxyHardnessPropertiesConductivityVapor
2001
Thermal conductivity of single wall carbon nanotubes: Diameter and annealing dependence
Llaguno M, Hone J, Johnson A, Fischer J. Thermal conductivity of single wall carbon nanotubes: Diameter and annealing dependence. AIP Conference Proceedings 2001, 591: 384-387. DOI: 10.1063/1.1426893.Peer-Reviewed Original Research
2000
Single carbon nanotube electronic devices
Johnson A, Lefebvre J, Radosavljevic M, Llaguno M, Lynch J. Single carbon nanotube electronic devices. AIP Conference Proceedings 2000, 544: 349-354. DOI: 10.1063/1.1342531.Peer-Reviewed Original ResearchNanotube FETsCarbon nanotube electronic devicesNanotube electronic devicesSilicon dioxide surfaceSingle-wall carbon nanotubesWall carbon nanotubesNanotube circuitsCarbon nanotubesElectronic devicesShadow maskDioxide surfaceNanotubesRecent progressFETResist systemCircuitElectrode pairsFabricationAFMDevicesMoleculesSeparationSurfaceMaskElectrical and thermal transport properties of magnetically aligned single wall carbon nanotube films
Hone J, Llaguno M, Nemes N, Johnson A, Fischer J, Walters D, Casavant M, Schmidt J, Smalley R. Electrical and thermal transport properties of magnetically aligned single wall carbon nanotube films. Applied Physics Letters 2000, 77: 666-668. DOI: 10.1063/1.127079.Peer-Reviewed Original ResearchSingle-wall carbon nanotube filmsWall carbon nanotube filmsCarbon nanotube filmsThermal transport propertiesIdentical temperature dependenciesThermal conductivityNanotube filmsThick filmsWall carbon nanotubesElectrical resistivitySingle-wall carbon nanotubesCarbon nanotubesTransport propertiesParallel directionFilmsTemperature dependencyMagnetic fieldNanotube ropesStrong magnetic fieldConductivityResistivityGraphiteNanotubesModerate anisotropySingle-wall carbon nanotube based devices
Lefebvre J, Antonov R, Radosavljević M, Lynch J, Llaguno M, Johnson A. Single-wall carbon nanotube based devices. Carbon 2000, 38: 1745-1749. DOI: 10.1016/s0008-6223(00)00050-6.Peer-Reviewed Original ResearchElectron beam lithographySingle-wall carbon nanotubesNanotube circuitsAFM nanomanipulationBeam lithographyFabrication techniquesCarbon nanotubesQuantum dotsSWNTsMechanical deformationTube-tube junctionsMolecular adsorbatesDevicesDouble quantum dotNanomanipulationLithographyNanotubesQuantum wiresDotsElectrodeDiodesFunctionalityCircuitAdsorbates
1999
Single-wall carbon nanotube circuits assembled with an atomic force microscope
Lefebvre J, Lynch J, Llaguno M, Radosavljevic M, Johnson A. Single-wall carbon nanotube circuits assembled with an atomic force microscope. Applied Physics Letters 1999, 75: 3014-3016. DOI: 10.1063/1.125218.Peer-Reviewed Original ResearchAtomic force microscopeSingle-wall carbon nanotubesNanotube circuitsForce microscopeCarbon nanotube circuitsElectron beam lithographyMode atomic force microscopeBeam lithographyCarbon nanotubesSWNT bundlesQuantum dotsGate voltageTip-sample forcesNanotubesTunnel barrierDotsTop of oneCircuitMicroscopeLithographyTransmissionTip speedVoltageNumber of charges