Semiconductor Physics, Quantum Electronics and Optoelectronics, 12 (1) P. 001-007 (2009).
DOI:
https://doi.org/10.15407/spqeo12.01.001
References
1. C.J. Brabec, N. Sariciftci, Solarzellen aus Plastik // Erneuerbare Energien 2, p. 28-34 (1997). | | 2. I.A. Akimov, A.M. Meshkov, I.Yu. Denisyuk, Nanostructured composite organic semiconductors // Functional Materials 5, p. 363-369 (1998). | | 3. C.J. Brabec, S.N. Sariciftci, J.C. Hummelen, Plastic solar cells // Adv. Funct. Mater. 11, p.15-26 (2001). https://doi.org/10.1002/1616-3028(200102)11:1<15::AID-ADFM15>3.3.CO;2-1 | | 4. J.G. Grote, Ya.I. Vertsimakha, The photosensitive polymeric composites from inorganic and organic semiconductors and prospects of their use // Proc. of the XIV Intern. Symposium "Advance Display Technologies". October 10-14, 2005, Crimea, Ukraine, p. 216-224. | | 5. S. Studzinsky, V. Syromyatnikov, A. Ishchenko, N. Derevyanko, Ya. Vertsimakha, A. Verbitsky, Effect of polymer matrix on photosensitivity of polymethine dye based composites // Nonlinear Optics, Quantum Optics 33(1-2), p.151-159 (2005). | | 6. N. Beresina, V. Syromyatnikov, A. Ishchenko, A. Verbitsky, Ya. Vertsimakha, Effect of polymer matrix on photosensitivity of meso-Cl polymethine dye based composites // Functional Materials 13 (4), p. 676-680 (2006). | | 7. A.A. Ishchenko, Structure, Spectral and Luminescent Properties of Polymethine Dyes. Naukova dumka, Kiev, 1994 (in Russian). | | 8. A.A. Ishchenko, Physicochemical aspects of the creation of modern light-sensitive materials based on polymethine dyes // Theoretical and Experimental Chemistry 34 (4), p. 191-210 (1998) (in Russian). https://doi.org/10.1007/BF02523249 | | 9. I.A. Akimov, The study of internal photoeffect in semiconductors by capacitor method // Optikomekhanicheskaya promyshlennost' No. 5, p. 4-13 (1966) (in Russian). | | 10. A.J. Heeger, Nature of the primary photoexcitations in poly(arylene-vinylenes): Bound neutral excitons or charged polaron pairs, in Primary excitation of conjugated polymers: Molecular exciton versus semiconductor band model (Ed. N.S. Sariciftci). World Scientific, Singapore, 1997. https://doi.org/10.1142/9789814447201_0002 | | 11. Thuc-Quyen Nguyen, Vinh Doan, and B.J. Schwartz, Conjugated polymer aggregates in solution: control of interchain interactions // J. Chem. Phys. 110, p. 4068-4078 (1999). https://doi.org/10.1063/1.478288 | | 12. M. Aguiar, M.C. Fugihara, I.A. Hümmelgen, L.O. Peres, J.R. Garcia, J. Gruber, L. Akcelrud, Interchain luminescence in poly(acetoxy-p-phenylene vinylene // J. Luminescence 96, p. 219-225 (2002). https://doi.org/10.1016/S0022-2313(01)00235-6 | | 13. M. Pope and C.E. Swenberg, Electronic Processes in Organic Crystals. Clarendon, Oxford, 1982. | | 14. A. Cravino, H. Neugebauer, S. Luzzati, M. Castellani, A. Petr, L. Dunsch and N.S. Sariciftci // J. Phys. Chem. B 106, p. 3583-3592 (2002). https://doi.org/10.1021/jp013351o | | 15. C. Winder and N.S. Sariciftci, Low bandgap polymers for photon harvesting in bulk heterojunction solar cells // J. Mater. Chem. 14, p. 1077-1086 (2004). https://doi.org/10.1039/b306630d | | 16. A. Ishchenko, N. Derevyanko, Yu.P. Piryatinskii, A. Verbitsky, D. Filonenko, S. Studzinsky, Optical and photovoltaic properties of films and polymer composites based on near infra-red polymethine dye // Materials Science 20 (4), p. 5-12 (2002). | |
|
|