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Fabrication of PbS Nanoparticles Embedded in Silica Gel by Reverse Micelles and Sol-Gel Routes
Authors:N. Pellegri  R. Trbojevich  O. de Sanctis  K. Kadono
Affiliation:(1) Ceram. Mat. Lab., FCEeI-IFIR-UNR, Av. Pellegrini 250, 2000 Rosario, Argentina;(2) Laboratorio de Materiales Ceramicos-FCEeI IFIR-U.N.R., Av. Pellegrini 250, 2000 Rosario, Argentina;(3) Osaka National Research Institute, Midorigaoka, 563 Ikeda City, Osaka, Japan
Abstract:PbS doped-silica gels showing a visible absorption onset were prepared by the sol-gel method. PbS nanoparticles with strong quantum-confinement effect were obtained from sodium sulfide and lead nitrate by the reverse micelle method. Chemical parameters such as the water/surfactant and the [Pb2+]/[S2−] ratios play a very important role in the PbS particle size and in their absorption threshold. The PbS nanoparticles were dispersed in a hydrolyzed solution of TEOS and converted to homogeneous gels after heating. The absorption threshold of PbS doped-gel is blue shifted compared to the one of the as-prepared PbS particles. The non-linear optical properties of the PbS nanoparticle solution were measured by degenerate four-wave mixing and theX (3) value was estimated to be 1.95 10−11 esu.
Keywords:PbS doped-silica gel  reverse micelles  sol-gel process  quantum confinement effect  non-linearity
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