articleTop 1% cited
Thermal conductivity of individual silicon nanowires
Applied Physics Letters · 2003 · Vol. 83(14) · pp. 2934–2936
Deyu Li✉(University of California, Berkeley)Yiying Wu(University of California, Berkeley)Philip Kim(Columbia University)Li Shi(The University of Texas at Austin)Peidong Yang(University of California, Berkeley)Arun Majumdar(Lawrence Berkeley National Laboratory)
Abstract
The thermal conductivities of individual single crystalline intrinsic Si nanowires with diameters of 22, 37, 56, and 115 nm were measured using a microfabricated suspended device over a temperature range of 20–320 K. Although the nanowires had well-defined crystalline order, the thermal conductivity observed was more than two orders of magnitude lower than the bulk value. The strong diameter dependence of thermal conductivity in nanowires was ascribed to the increased phonon-boundary scattering and possible phonon spectrum modification.
Thermal properties of materialsNanowire Synthesis and ApplicationsAdvancements in Semiconductor Devices and Circuit DesignNanowireThermal conductivityMaterials sciencePhononSiliconCondensed matter physicsScatteringPhonon scatteringThermalAtmospheric temperature range
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References
Nanoscale thermal transport
Journal of Applied Physics · 2003 · 3,097 citations
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