Zobrazeno 1 - 3
of 3
pro vyhledávání: '"Ekaterina S. Frantseva"'
Autor:
Evgeny A. Mostovich, Igor P. Koskin, Maxim S. Kazantsev, Ekaterina S. Frantseva, Inna K. Shundrina, Tatyana V. Rybalova, Anatoly D. Kuimov, Christina S. Becker, Alina A. Beloborodova
Publikováno v:
Organic Electronics. 56:208-215
Heteroaryl-containing co-oligomers are considered among the most promising materials for organic optoelectronics. In this work we synthesized a series of linear furan/phenylene co-oligomers (FPs) with different molecular length and studied their stru
Autor:
Tatyana V. Rybalova, Ekaterina S. Frantseva, Inna K. Shundrina, Alina A. Beloborodova, Vladislav G. Konstantinov, Evgeny A. Mostovich, Maxim S. Kazantsev, Dmitry Yu. Paraschuk
Publikováno v:
CrystEngComm. 19:1809-1815
Single crystals of furan/phenylene co-oligomers are among the most promising highly-emissive materials for applications in various optoelectronic devices. In this work, we synthesized and studied furan/phenylene co-oligomers with the same conjugated
Autor:
Gennadiy N. Kamaev, Elena Karpova, Liudmila G. Kudriashova, Dmitry Yu. Paraschuk, Vladislav G. Konstantinov, Inna K. Shundrina, Ekaterina S. Frantseva, Maxim S. Pshenichnikov, Tatyana V. Rybalova, Artur A. Mannanov, Maxim S. Kazantsev, Evgeny A. Mostovich
Publikováno v:
RSC Advances, 6(95), 92325-92329. ROYAL SOC CHEMISTRY
Solution-processed furan/phenylene co-oligomer single crystals combine high photoluminescence quantum yield (>65%) and efficient charge transport (mobility 0.12 cm(2) V-1 s(-1)) making them promising materials for printable organic optoelectronics.