Semiconductor Physics, Quantum Electronics & Optoelectronics. 2013. V. 16, N 1. P. 091-096.
References 1. A.A. Ishchenko, Structure and Spectral-luminescent Properties of Polymethine Dyes. Kyiv, Naukova dumka, 1991, pp. 8-12, 189-206 (in Russian).2. S.F. Mason, Color and the electronic state of organic molecules. In: K. Venkataraman, Editor, The Chemistry of Synthetic Dyes. Academic Press, New York, 1974, V.3, p. 1708-1709. 3. P. Czerney, G. Granesz, E. Birckner, F. Vollmer, W. Rettig, Molecular engineering of cyanine-type fluorescent and laser dyes. J. Photochemistry and Photobiology A: Chemistry, 89(1), p. 31-36 (1995). https://doi.org/10.1016/1010-6030(94)04018-W 4. V. Shelkovnikov, A.I. Plekhanov, N.A. Orlova, Nanometer films of polymethine dyes in optical memory and nonlinear optics. Nanotechnology in Russia, 3(9-10), p. 35-57 (2008). https://doi.org/10.1134/S1995078008090012 5. F.A. Castro et al., On the use of cyanine dyes as low-bandgap materials in bulk heterojunction photovoltaic devices. Synthetic Metals, 156, p. 973-978 (2006). https://doi.org/10.1016/j.synthmet.2006.06.010 6. B. Fan et al., Enhanced cyanine solar cell performance upon oxygen doping. Organic Electronics, 9, p. 85-94 (2008). https://doi.org/10.1016/j.orgel.2007.09.008 7. B. Fan et al. High performing doped cyanine bilayer solar cell. Organic Electronics, 11, p. 583-588 (2010). https://doi.org/10.1016/j.orgel.2009.12.017 8. V.Y. Merritt, Organic photovoltaic materials: Squarylium and cyanine-TCNQ dyes. J. Res. Develop. 22(4), p. 353-371 (1978). https://doi.org/10.1147/rd.224.0353 9. Z. Dai, L. Dähne, E. Donath, and H. Möhwald, Mimicking photosynthetic two-step energy transfer in cyanine triads. Langmuir, 18(12), p. 4553-4555(2002). https://doi.org/10.1021/la0255222 10. L. Dahne, C.S. Peyratout, Tailor-made polyelectrolyte microcapsules: From multilayers to smart containers. Angew. Chem. Int. Ed. 43, p. 3762-3783(2004). https://doi.org/10.1002/anie.200300568 11. L.M. Blinov, Langmuir films. Uspekhi Fiz. Nauk, 155(3), p. 443-480 (1988), in Russian. https://doi.org/10.3367/UFNr.0155.198807c.0443 12. L. Dahne, Self-organization of polymethine dyes in thin solid layers. J. Am. Chem. Soc. 117, p. 12855-12860 (1995). https://doi.org/10.1021/ja00156a024 13. O.N. Bezkrovnaya, I.M. Pritula, Luminescent properties of rhodamine 6g dye in silica sol-gel matrices. Functional Materials, 17(4), p. 433-438 (2010). 14. H. Xi, Z. Wei, Z. Duan, W. Xu, and D. Zhu, Facile method for fabrication of nanostructured CuPC thin films to enhance photocurrent generation. J. Phys. Chem. C, 112, p. 19934-19938 (2008). https://doi.org/10.1021/jp8080673 15. H. Bottcher, T. Fritz, John D. Wright, Fabrication of evaporated dye films and their application. J. Mater. Chem. 3(12), p. 1187-1197(1993). https://doi.org/10.1039/JM9930301187 16. G. Koller, S. Berkebile, J. Krenn, F. Netzer, M. Oehzelt, T. Haber, Heteroepitaxy of organic-organic nanostructures. Nano Lett. 6(6), p. 1207-1212(2006). https://doi.org/10.1021/nl060629l 17. A.A. Ishchenko, Yu.L. Slominsky, A.I. Tolmachov, Modern achievements in the field of polymethine dyes of A.I. Kiprianov's school. Zhurnal Org. Pharm. Khimii, 7(3), p. 3-24 (2009), in Ukrainian. 18. A.V. Kulinich, A.A. Ishchenko, Merocyanine dyes: Synthesis, structure, properties and applications. Russian Chem. Rev. 78(2), p. 141-164 (2009). https://doi.org/10.1070/RC2009v078n02ABEH003900 19. G. Behera, P. Behera, Cyanine dyes: Self-aggregation and behaviour in surfactants (A Review). J. Surf. Sci. Technol. 23(1-2), p. 1-31 (2007). 20. B. Shapiro, Molecular assemblies of polymethine dyes. Russian Chem. Rev. 75(5), p. 484-510 (2006). https://doi.org/10.1070/RC2006v075n05ABEH001208 21. K. Grytsenko, T. Doroshenko, Yu. Kolomzarov, O. Lytvyn, M. Serik, O. Tolmachev, Yu. Slominski, S. Schrader, Growth and optical properties of dye films and dye-in-polymer matrix deposited by vacuum evaporation. Semiconductor Physics, Quantum Electronics & Optoelectronics 13(2), p. 177-179 (2010). 22. K. Grytsenko, T. Doroshenko, Yu. Kolomzarov, D. Prescher et al., Research on the growth of dye film in vacuum in situ. Proc. SPIE, 6999, p. 6991z-1–6991z-6 (2008). 23. K. Grytsenko, Yu. Kolomzarov, O. Lytvyn, V. Prokopets, O. Tolmachev et al., Nonconventional properties of dye clusters in polytetrafluoroethylene matrix. Abstr. Book Conf. "Physics and Technol. of Thin Films and Nanosystems," May 25-29, 2009, Ivano-Frankivsk, Ukraine, p. 163-164 (2009). |