Applied Physics Letters · 2007 · 109 citations · 17 references
EngineeringThermal ConductivityNanoelectronicsThermal AnalysisThermodynamicsThermal ConductionCarbon NanotubesLength-dependent Thermal ConductivityMaterials ScienceElectrical EngineeringThermal TransportHeat TransferPhonon Mean PathSwcnts IdealThermal EngineeringNanomaterialsIndividual SwcntsApplied PhysicsGrapheneNanotubesThermal Property
The thermal conductivity of single-wall carbon nanotubes (SWCNTs) is predicted to increase with length, but this has never been proved experimentally because of limitations in previous measurement methods. Here, the authors report the measurement of the length-dependent thermal conductivities of individual SWCNTs on a Si substrate using a four-pad 3ω method. An increase in thermal conductivity with length was observed at room temperature, which is consistent with a theoretical prediction that considers higher order three-phonon processes. When SWCNTs are longer than the phonon mean path, they showed dissipative thermal transport. The observed increase of thermal conductivity with length makes SWCNTs ideal for thermal management.
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Thermal Transport Measurements of Individual Multiwalled Nanotubes
Philip Kim, Li Shi, Arun Majumdar et al. · Physical Review Letters · 2001 · 3.3K citations · Full text
Thermal Transport Measurements, Engineering, Thermoelectrics +18
Thermal Conductance of an Individual Single-Wall Carbon Nanotube above Room Temperature
Eric Pop, David J. Mann, Qian Wang et al. · Nano Letters · 2005 · 1.8K citations · Full text
Thermal conduction in classical low-dimensional lattices
Physics Reports · 2003 · 1.4K citations · Full text
Thermal conductivity of carbon nanotubes
Jianwei Che, William A. Goddard · Nanotechnology · 2000 · 1.1K citations · Full text
Engineering, Thermal Conductivity, Carbon-based Material +17