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Selective Pulsed Heating for the Synthesis of Semiconductor and Metal Submicrometer Spheres

Canned heat: Inhibition of anisotropic crystal growth is critical for synthesizing semiconductor/metal spheres, but it is kinetically difficult to achieve in methods relying on conventional heating. Selective heating of colloidal nanoparticles by pulsed laser irradiation allows size‐tailored semicon...

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Published in:Angewandte Chemie (International ed.) 2010-08, Vol.49 (36), p.6361-6364
Main Authors: Wang, Hongqiang, Pyatenko, Alexander, Kawaguchi, Kenji, Li, Xiangyou, Swiatkowska-Warkocka, Zaneta, Koshizaki, Naoto
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container_issue 36
container_start_page 6361
container_title Angewandte Chemie (International ed.)
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creator Wang, Hongqiang
Pyatenko, Alexander
Kawaguchi, Kenji
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Koshizaki, Naoto
description Canned heat: Inhibition of anisotropic crystal growth is critical for synthesizing semiconductor/metal spheres, but it is kinetically difficult to achieve in methods relying on conventional heating. Selective heating of colloidal nanoparticles by pulsed laser irradiation allows size‐tailored semiconductor and metal submicrometer spheres to be synthesized.
doi_str_mv 10.1002/anie.201002963
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source Wiley-Blackwell Read & Publish Collection
subjects metals
nanoparticles
selective pulsed heating
semiconductors
submicrometer spheres
title Selective Pulsed Heating for the Synthesis of Semiconductor and Metal Submicrometer Spheres
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