Abstract
A series of 9,9′-spirobifluorene/oxadiazole hybrids with various linkages between two components, namely SBF-p-OXD (1), SBF-m-OXD (2), and SBF-o-OXD (3) are designed and synthesized through Suzuki crosscoupling reactions. The incorporation of a rigid and bulky spirobifluorene moiety greatly improves their thermal and morphological stability, with Td (decomposition temperature) and Tg (glass transition temperature) in the ranges of 401-480 °C and 136-210 °C, respectively. 2 and 3 with meta- and ortho-linkage display higher triplet energy and blue-shifted absorption and emission than their para-linked analogue 1 owing to the decreasing π-conjugation between the two components. Their HOMO and LUMO energy levels depend on the linkage modes within the range of 5.57-5.64 eV and 2.33-2.49 eV, respectively. Multilayer deep red electrophosphorescent devices with 1-3 as hosts were fabricated and their EL efficiencies follow the order of 3 (o)>2 (m)>1 (p), which correlates with their triplet energy and the separation of HOMO and LUMO distributions at molecular orbitals. The maximum external quantum efficiencies of 11.7% for green and 9.8% for deep red phosphorescent organic lightemitting diodes (OLEDs) are achieved by using 2 and 3 as host materials, respectively.
Original language | English |
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Pages (from-to) | 278-284 |
Number of pages | 7 |
Journal | Chemistry - An Asian Journal |
Volume | 5 |
Issue number | 2 |
DOIs | |
State | Published - 1 Feb 2010 |
Externally published | Yes |
Keywords
- Heterocycles
- Host-guest systems
- Phosphorescence
- Spiro compounds
- Structure