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Nanoparticles Heat through Light Localization
Author(s) -
Nathaniel J. Hogan,
Alexander S. Urban,
Ciceron AyalaOrozco,
Alberto Pimpinelli,
Peter Nordlander,
Naomi J. Halas
Publication year - 2014
Publication title -
nano letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.853
H-Index - 488
eISSN - 1530-6992
pISSN - 1530-6984
DOI - 10.1021/nl5016975
Subject(s) - nanoparticle , vaporization , boiling , boiling point , materials science , light scattering , absorption (acoustics) , chemical physics , heat transfer , optics , scattering , nanotechnology , chemistry , mechanics , thermodynamics , composite material , physics
Aqueous solutions containing light-absorbing nanoparticles have recently been shown to produce steam at high efficiencies upon solar illumination, even when the temperature of the bulk fluid volume remains far below its boiling point. Here we show that this phenomenon is due to a collective effect mediated by multiple light scattering from the dispersed nanoparticles. Randomly positioned nanoparticles that both scatter and absorb light are able to concentrate light energy into mesoscale volumes near the illuminated surface of the liquid. The resulting light absorption creates intense localized heating and efficient vaporization of the surrounding liquid. Light trapping-induced localized heating provides the mechanism for low-temperature light-induced steam generation and is consistent with classical heat transfer.

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