Influence of annealing conditions on size and optical properties of copper nanoparticles embedded in silica matrix

被引:78
作者
Yeshchenko, Oleg A.
Dmitruk, Igor M.
Dmytruk, Andriy M.
Alexeenko, Alexandr A.
机构
[1] Natl Taras Shevchenko Kyiv Univ, Dept Phys, UA-03127 Kiev, Ukraine
[2] Tohoku Univ, Interdisciplinary Res Ctr, Aoba Ku, Sendai, Miyagi 9808578, Japan
[3] Gomel State Tech Univ, Gomel, BELARUS
来源
MATERIALS SCIENCE AND ENGINEERING B-SOLID STATE MATERIALS FOR ADVANCED TECHNOLOGY | 2007年 / 137卷 / 1-3期
关键词
copper nanoparticles; surface plasmons; nanofabrication; electron microscopy; optical properties;
D O I
10.1016/j.mseb.2006.11.030
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Copper nanoparticles have been grown in silica matrix by annealing of the sol-gel prepared porous matrix impregnated with the copper nitrate. The annealing has been performed in air, successively in air and hydrogen, and in hydrogen. An annealing in air results in copper oxide nanoparticles (Cu2O) growth as well. Transmission electron microscopy proves the formation of the spherical copper nanoparticles, in size range of 2-65 nm depending on annealing conditions. Optical spectroscopy of the copper nanoparticles has been performed. The surface plasmon peak has been observed clearly in absorption spectra of Cu nanoparticles. Surface plasmon peak in absorption spectra of Cu nanoparticles demonstrates slight blue shift with decrease of the particle size. The bandwidth of the surface plasmon peak decreases appreciably at the lowering of temperature from 293 K to 77 and 4.2 K that is due to strong electron-phonon interaction. The low-frequency Raman scattering data are in agreement with electron microscopy and absorption data. Photoluminescence from the copper nanoparticles, has been observed. Efficiency of the luminescence increases appreciably at the decrease of particle size. The observed increase is explained by the coupling of the excited incoming and outgoing emitted photons with surface plasmon. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:247 / 254
页数:8
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