1617505-48-2Relevant academic research and scientific papers
Tuning the donors to control the lifetimes of charge-separated states in triazine-based donor-acceptor systems
Lu, Ting,Sun, Haiya,Colley, Nathan D.,Bridgmohan, Chelsea N.,Liu, Dongzhi,Li, Wei,Hu, Wenping,Zhou, Xueqin,Wang, Tianyang,Wang, Lichang
, p. 404 - 415 (2016/09/14)
Six donor-acceptor systems with styrene based 9-phenyl carbazole, 4,4’-di(hydro, methyl, methoxy or octyloxy) triphenylamine and 4-methylphenyl indoline derivatives as donors, and s-triazine group as the acceptor were synthesized and characterized. The ch
Ambipolar organic semiconductors with cascades of energy levels for generating long-lived charge separated states: A donor-acceptor1-acceptor2 architectural triarylamine dye
Wang, Tianyang,Weerasinghe, Krishanthi C.,Liu, Dongzhi,Li, Wei,Yan, Xilong,Zhou, Xueqin,Wang, Lichang
supporting information, p. 5466 - 5470 (2014/07/08)
A donor-acceptor1-acceptor2 architectural 4-styryltriphenyl amine-based organic semiconductor was synthesized for solar cell applications. Sequential electron transfers together with effective hole transfer lead to a charge separated state lifetime of 650 ns, therefore boosting the short circuit current and efficiency of single layer organic photovoltaic cells. This journal is the Partner Organisations 2014.
