Conţinutul numărului revistei |
Articolul precedent |
Articolul urmator |
115 0 |
SM ISO690:2012 , , YOVU, M., ANDRIESH, Andrei, NISTOR, Yu., CULEAC, Ion, MALAHOV, Ludmila, TURTA, Constantin. Optical absorption and photoluminescence of lumonophore nanocomposites. In: Physica Status Solidi (C) Current Topics in Solid State Physics, 2011, vol. 8, pp. 2837-2840. ISSN 1862-6351. DOI: https://doi.org/10.1002/pssc.201084141 |
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Physica Status Solidi (C) Current Topics in Solid State Physics | ||||||
Volumul 8 / 2011 / ISSN 1862-6351 /ISSNe 1610-1642 | ||||||
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DOI:https://doi.org/10.1002/pssc.201084141 | ||||||
Pag. 2837-2840 | ||||||
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The europium complex tris(dibenzoylmethane)(monophenanthroline)europium (III) (Eu(DBM)3Phen) was successfully incorporated with different molar ratios into organic copolymer matrix of styrene:butylmethacrilate (1:1) (SBMA) via sol-gel process. Spin-coated thin films were obtained. The layers turn out to be transparent in optical range of investigation. Absorption and luminescence properties of a europium complex on each step of technology nanocomposites of the pure Eu(DBM)3Phen complex powder, its solution with SBMA and the resultant thin films nanocomposites (NC) phosphors (SBMA -Eu(DBM)3Phen) were investigated. The microscopic investigations of the morphology of the NC surface show that the dimensions of Eu(DBM)3Phen particles, incorporated in the polymer matrix are less than 100 nm. The forbidden bands of NC were obtained. Photoluminescence (PL) spectra have been measured exciting with N2-laser (λ = 0.334 μm) and they were revealed the radiative bands between the energy levels of the europium ions centered at 578, 590, 615, 652, and 705 nm and can be attributed to the spin forbidden f-f transitions 5D0 → 7Fi (i = 0,1,2,3 and 4), respectively. |
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Cuvinte-cheie Laser emission, nanocomposite, rare earth ion |
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