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Synthesis and characterization of organic-inorganic hybrid materials prepared by sol-gel and containing ZnxCd1-xS nanoparticles prepared by a colloidal method

Title
Synthesis and characterization of organic-inorganic hybrid materials prepared by sol-gel and containing ZnxCd1-xS nanoparticles prepared by a colloidal method
Type
Article in International Scientific Journal
Year
2013
Authors
Goncalves, LFFF
(Author)
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Silva, CJR
(Author)
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Kanodarwala, FK
(Author)
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Stride, JA
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Pereira, MR
(Author)
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Gomes, MJM
(Author)
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Journal
Vol. 144
Pages: 203-211
ISSN: 0022-2313
Publisher: Elsevier
Other information
Authenticus ID: P-006-665
Abstract (EN): Nanocomposite materials based on a hybrid organic-inorganic ureasilicate matrix doped with ZnxCd1-xS nanoparticles were prepared. ZnxCd1-xS nanoparticles with different compositions (Zn/Cd mole ratio) were prepared through a colloidal method using reverse micelles. Previously to dispersion within the matrix precursors used to prepare the hybrid gel composite, the nanoparticles surface was modified in order to improve compatibility and stability with the matrix and to assure the preservation of the original optical properties of the nanoparticles. The matrix was obtained by the reaction between a silicon alkoxide modified by an isocyanate group and a di-amine functionalized oligopolyoxyethylene (Jeffamine ED-600), which by subsequent hydrolysis and condensation reactions formed a mechanically stable and highly transparent solid network containing the ZnxCd1-xS nanoparticles. The materials were characterized by absorption, steady-state and time-resolved photoluminescence spectroscopy and by HRTEM. The obtained nanocomposites show a high transparency in the visible range accounting for the good dispersion of the nanoparticles within the matrix. The results obtained confirmed the preservation of the original optical properties of the nanoparticles after their incorporation into the ureasilicate matrix, showing that the developed method is suitable for the production of materials with potential applications in which it is necessary to take advantage of the optical properties of the nanoparticles incorporated. The HRTEM analysis confirmed that the dispersed nanoparticles show a high level of crystallinization.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 9
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