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Abstrakty
Results of optical-luminescence studies of polydoped photochromic CdBr2 : AgCl,PbBr2 crystals are presented. It is shown that the luminescence decrease vs. time under N2-laser excitation in the range of A-band of Pb2+ absorption is due to photochemical reactions. The empirical model describing the decrease of the luminescence related to silver impurities due to photochemical processes is suggested. Model parameters (trapping cross-section – σ – and the amount of centres destroyed by irradiation – β) were determined using the comparative analysis of experimental and calculated luminescence decay curves.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
604--609
Opis fizyczny
Bibliogr. 26 poz., wykr.
Twórcy
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
autor
- Ivan Franko National University of Lviv, 1 Universytetska str., 79000 Lviv, Ukraine
Bibliografia
- [1] DÜRR H., BOUAS-LAURENT H., Photochromism: Molecules and Systems, Elsevier, 2003.
- [2] DELAIRE J.A., NAKATANI K., Chem. Rev., 100 (5) (2000), 1817.
- [3] MEGLA G.K., Appl. Optics, 5 (6) (1966), 945.
- [4] ARAUJO R.J., Appl. Optics, 7 (5) (1968), 781.
- [5] SCOTT J.L., TANAKA K., Cryst. Growth Des., 5 (3) (2005), 1209.
- [6] BENSOUICI A., PLAZA J.L., DIEGUEZ E. et al., J. Lumin., 130 (4) (2010), 688.
- [7] LYSKOVICH A.B. (Ed.), Wide-gap Layered Crystals and Their Physics Properties, Vyscha Shkola, Lvov, 1982 (in rus.).
- [8] BRODIN M.S., BLONSKY I.V., Excitonic Processes in Layered Crystals, Kiev, Naukova Dumka, 1986 (in rus.).
- [9] LYSKOVICH O.B., NOVOSAD S.S., KRAVCHUK O.Y., Ukr. J. Phys., 40 (9) (1995), 1001 (in ukr.).
- [10] NOVOSAD S.S., GAL’CHYNSKYY O.V., KOVALYUK R.O., Nucl. Instrum. Meth., 116, 1916 (1996), 265.
- [11] NOVOSAD S.S., NOVOSAD I.S., PCSS, 8 (4) (2007), 759 (in ukr.).
- [12] NOVOSAD S.S., NOVOSAD I.S., Funct. Mater., 11, 2 (2004), 258.
- [13] NOVOSAD S.S., NOVOSAD I.S., BORODCHUK A.V., Inorg. Mater.+, 41, (2) (2005), 235.
- [14] NOVOSAD S.S., KOSTYUK B.M., Ukr. J. Phys., 42 (5) (1997), 568 (in ukr.).
- [15] LYSKOVICH A.B., MARTYNIV S.D., NOVOSAD S.S., KOSTYUK B.M., Inorg. Mater.+, 34 (8) (1998), 974 (in rus.).
- [16] NOVOSAD S.S., NOVOSAD I.S., KALIVOSHKA B.M., Phys. Solid. State+, 53, 8 (2011), 1548 (in rus.).
- [17] NOVOSAD S.S., KOSTYUK B.M., Ukr. J. Phys., 43, 7 (1998), 871 (in ukr.).
- [18] NOVOSAD S.S., KOSTYUK B.M., Funct. Mater., 5, 2 (1998), 171.
- [19] NOVOSAD S.S., Ukr. J. Phys., 43, 3 (1998), 338 (in ukr.).
- [20] GEORGOBIANI A.N., SHEIKMAN M.K. (Eds.), Physics of AIIB V I Compounds, Nauka, Moscow, 1986 (in rus.).
- [21] GURVICH A.M., Introduction in Physical Chemistry of Crystal Luminophors, Vysshaya Shkola, Moscow, 1982 (in rus.).
- [22] NOVOSAD S.S., KALIVOSHKA B.M., Phys. Solid. State+, 51, 6 (2009), 1072 (in rus.).
- [23] NOVOSAD S.S., KALIVOSHKA B.M., PCSS, 8, 4 (2007), 753 (in ukr.).
- [24] BOLESTA I.M., VELGOSH S.R., KARBOVNYK I.D. et al., Phys. Solid. State+, 54, 10 (2012), 1935 (in rus.).
- [25] KOLOMIETS B.T., MAMONTOVA T.N., CHERNYSHOV A.V., Sov. Phys. Semicond., 17, 9 (1983), 708 (in rus.).
- [26] MAMONTOVA T.N., CHERNYSHOV A.V., Sov. Phys. Semicond., 18, 3 (1984), 332 (in rus.).
Typ dokumentu
Bibliografia
Identyfikator YADDA
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