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Abstrakty
Syntheses and thermal, optical as well as photoelectrical properties of carbazolyl-, triphenylaminoand 2-hydroxy-4-diethylaminophenyl-based hydrazones with reactive methacryloyl groups have been reported. All the synthesized materials form glasses with glass transition temperatures ranging from 9 to 50 °C. They absorb electromagnetic radiation in the 250-440 nm range. Ionization potentials of the amorphous films of the synthesized materials, established by electron photoemission technique range from 5.20 to 5.71 eV. The lowest ionization potential and the best charge transport properties were observed for 2-(methacryloyl)oxy-4-diethylaminophenyl-1-carbaldehyde N,N-diphenylhydrazone. Time-of-flight hole mobilities in its 50% solid solution in bisphenol Z polycarbonate reach 10-5 cm2/(Vos) at high electric fields.
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Rocznik
Tom
Strony
61--72
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
autor
autor
autor
autor
autor
autor
- Department of Organic Technology, Kaunas University of Technology, Radvilénu pl. 19, LT-50254 Kaunas, Lithuania
Bibliografia
- [1] STOLKA M., [in:] Special Polymers for Electronics and Optoelectronics, J.A. Chilton, M.T. Goosey (Eds.), Chapman and Hall, London, 1995, p. 284.
- [2] BORSENBERGER P.M., WEISS D.S, Organic Photoreceptors for Xerography, M. Dekker, New York, 1998, p. 768.
- [3] JIANG K.J., SUN Y.L., SHAO K.F, YANG L.M., Chem. Lett., 33 (2004), 50.
- [4] GETAUTIS V., STANISAUSKAITE A., MALINAUSKAS T., STUMBRAITE J., GAIDELIS V., JANKAUSKAS V., Monatsh. Chem., 137 (2006), 1401.
- [5] GETAUTIS V., DASKEVICIENE M., MALINAUSKAS T., GAIDELIS V., JANKAUSKAS V., TOKARSKI Z., Synth. Met., 155 (2005), 599.
- [6] GETAUTIS V., DASKEVICIENE M., MALINAUSKAS T., STANISAUSKAITE A., STUMBRAITE J., Molecules, 11 (2006), 64.
- [7] BUDRECKIENE R., BUIKA G., GRAZULEVICIUS J.V., JANKAUSKAS V., STANISKIENE B., J. Photochem. Photobiol. A. Chem., 181 (2006), 257.
- [8] BUDRECKIENE R., BUIKA G., GRAZULEVICIUS J.V., JANKAUSKAS V., TOKARSKI Z., Synth. Met., 156 (2006), 677.
- [9] LIDLE D.R., Handbook for Organic Solvents, CRC Press, Boca Raton, 1995.
- [10] LEE H.J., SOHN J., HWANG J., PARK S.Y., CHOI H., CHA M., Chem. Mater., 16 (2004), 456.
- [11] OSTRAUSKAITE J., VOSKA V., ANTULIS J., GAIDELIS V., JANKAUSKAS V., GRAZULEVICIUS J.V., J. Mater. Chem., 12 (2002), 3469.
- [12] MIYAMOTO E., YAMAGUCHI Y., YOKOYAMA M., Electrophotography, 28 (1989), 364.
- [13] MONTRIMAS E., GAIDELIS V., PAZERA A., Lithuanian Journal of Physics, 6 (1966), 569.
- [14] VAEZI-NEJAD S.M., Int. J. Electronics, 62, (1987) 361.
- [15] STROHRIEGL P., Mol. Cryst. Liq. Cryst. 183, (1990), 261.
- [16] BUDRECKIENE R., GRAZULEVICIUS J.V., JANKAUSKAS V., VEDEGYTE J., SIDARAVICIUS J., J. Optoelectronics Adv. Mater., 8 (2006), 1533.
- [17] VILSMEIER A., HACK A., Ber. 60 (1927) 119.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0011-0063