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Extremely high thermal conductivity of graphene: Prospects for thermal management applications in nanoelectronic circuits

Applied Physics Letters · 2008 · Vol. 92(15)
Subhajit GhoshIrene CalizoDesalegne TeweldebrhanE. P. PokatilovDenis L. NikaAlexander A. BalandinWenzhong BaoFeng MiaoChun Ning Lau

Abstract

The authors reported on investigation of the thermal conductivity of graphene suspended across trenches in Si∕SiO2 wafer. The measurements were performed using a noncontact technique based on micro-Raman spectroscopy. The amount of power dissipated in graphene and corresponding temperature rise were determined from the spectral position and integrated intensity of graphene’s G mode. The extremely high thermal conductivity in the range of ∼3080–5150W∕mK and phonon mean free path of ∼775nm near room temperature were extracted for a set of graphene flakes. The obtained results suggest graphene’s applications as thermal management material in future nanoelectronic circuits.

Graphene research and applicationsThermal properties of materialsCarbon Nanotubes in CompositesGrapheneThermal conductivityMaterials scienceRaman spectroscopyPhononWaferGraphene nanoribbonsOptoelectronicsNanotechnologyThermal
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References
The rise of graphene
Nature Materials · 2007 · 39,026 citations
Carbon nanotube composites for thermal management
Applied Physics Letters · 2002 · 1,534 citations
Making graphene visible
Applied Physics Letters · 2007 · 1,741 citations
Raman Spectrum of Graphene and Graphene Layers
Physical Review Letters · 2006 · 14,760 citations
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