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Aggregation of dyes in porous glass

Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
The research examines the interaction of dye molecules with their dimers (H aggregates) and the more complex formations (J aggregates) developing in porous glass. The use of porous glass when dealing with dye aggregation has resulted in obtaining photoluminescence dimers of the J aggregating dye, the formation of which is difficult under normal conditions. In addition, the porous glass matrix contributes to a substantial reduction in the interaction of photoexcited states of both a molecular and an aggregated dye, thus helping maximize the luminescence efficiency of porous glass-distributed dyes.
Słowa kluczowe
Czasopismo
Rocznik
Strony
311--321
Opis fizyczny
Bibliogr. 13 poz.
Twórcy
autor
autor
autor
autor
  • Institute of Physics, I.I.Mechnikov Odessa National University, Pasteur St. 27, 65-082 Odessa, Ukraine
Bibliografia
  • [1] SHAPIRO B.I., Basis Theory of the Photographic Process, Editorial URSS, Moscow, 2000, p. 646.
  • [2] O’REGAN B., GRÄTZEL M., Photochemical method for the conversation of light into chemical energy, Nature 353, 1991, pp. 737–747.
  • [3] BEZRODNY V.I., DEREVIANKO N.A., ISHENKO A.A., KARABANOVA L.V., Laser of dye on basis of polyurethane matrix, Zhurnal Tekhnicheskoi Fiziki 71(7), 2001, pp. 72–78 (in Russian).
  • [4] ALDEG G.R., DOLOTOV S.M., KOLDUNOV M.F., KRAVCHENKO YA.V., MANENKOV A.A., PACHIKO D.P., PONOMARENKO E.V., REZNICHENKO A.V., ROSKOVA G.P., TSEKHOMSKAYA T.S., Composite a microporous glass – a polymeric compound: a new material for solid-state dye laser, Kvantovaya Elektronika 30(11), 2000, pp. 954–958 (in Russian).
  • [5] KUZNECOV K.A., LAPTINSKAYA T.V., MAMAEV YU.B. et al., Gereration third harmonic in J-aggregate immobilization in polymer matrix, Kvantovaya Elektronika 34(10), 2004, pp. 927–929 (in Russian).
  • [6] DIETZ F.J., Zum Stand der Theorie der spektralen Sensibilisierung, J. Signal AM 6(4–5), 1978, pp. 245–266, 341–361.
  • [7] SADIKOVA A.A., KOZAKOV B.I., MEYKLIAR P.V., LOGINOVA I.S., Application method of the temporary of luminescence spectra resolution for examination of microcrystal emulsion, ZNiPFiK 30(6), 1985, pp. 457–459.
  • [8] RYSIAKIEWICZ-PASEK E., GEVELYUK S.A., DOYCHO I.K., VOROBJOVA V.O., Application of porous glasses in ophthalmic prosthetic repair, Journal of Porous Materials 11(1), 2004, pp. 21–29.
  • [9] ROSSI U.D., DAEHNE S., REISFELD R., Photophisical properties of cyanine dyes in sol–gel matrices, Chemical Physics Letters 251(5–6), 1996, pp. 259–267.
  • [10] GILMAN P.B., The luminescent properties of 1,1'-diethyl-2,2'-cyanine alone and absorbed to silver halides, Photographic Science and Engineering 11(4), 1967, pp. 222–232.
  • [11] GILMAN P.B., Effects of aggregation, temperature and supersensitization on the luminescence of 1,1'-diethyl-2,2'-ceanine adsorbed to silver chloride, Photographic Science and Engineering 12(5), 1968, pp. 230–273.
  • [12] COOPER W., Electronic adsorption, luminescence and related properties of resolved J-aggregates of 1,1'-diethyl-2,2'-cyanine adsorbed to silver halide, Photographic Science and Engineering 17(2), 1973, pp. 217–225.
  • [13] TYURIN A.V., CHURASHOV V.P., ZHUKOV S.A., MANCHENKO L.I., LEVITSKAYA T.F., SVIRIDOVA O.I., Interaction dye molecular and polymolecular formation, Optika i Spektroskopia 104(1), 2008, pp. 97–103 (in Russian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0012-0151
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