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Microscale Heat Transfer Transduced by Surface Plasmon Resonant Gold Nanoparticles

The Journal of Physical Chemistry C · 2007 · Vol. 111(9) · pp. 3636–3641
D. Keith RoperWonmi AhnMichael P. Hoepfner

Abstract

Visible radiation at resonant frequencies is transduced to thermal energy by surface plasmons on gold nanoparticles. Temperature in </=10-microliter aqueous suspensions of 20-nanometer gold particles irradiated by a continuous wave Ar+ ion laser at 514 nm increased to a maximum equilibrium value. This value increased in proportion to incident laser power and in proportion to nanoparticle content at low concentration. Heat input to the system by nanoparticle transduction of resonant irradiation equaled heat flux outward by conduction and radiation at thermal equilibrium. The efficiency of transducing incident resonant light to heat by microvolume suspensions of gold nanoparticles was determined by applying an energy balance to obtain a microscale heat-transfer time constant from the transient temperature profile. Measured values of transduction efficiency were increased from 3.4% to 9.9% by modulating the incident continuous wave irradiation.

Laser-Ablation Synthesis of NanoparticlesGold and Silver Nanoparticles Synthesis and ApplicationsNonlinear Optical Materials StudiesMicroscale chemistryMaterials scienceIrradiationColloidal goldNanoparticleHeat transferSurface plasmon resonanceHeat fluxContinuous waveLaser
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References
Cancer Cell Imaging and Photothermal Therapy in the Near-Infrared Region by Using Gold Nanorods
Journal of the American Chemical Society · 2006 · 5,354 citations
Int. J. heat mass transfer
International Journal of Heat and Mass Transfer · 1972 · 851 citations
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