Abstract
The development of purely organic fluorescence emitters is of great importance for their low cost and high performance. Responding to this demand, carbazole is a promising emitter due to its extensive freedom for functionalisation, high thermal and chemical stability, as well as low cost. Herein, the effect of protonation on the fluorescence of various pyridine-functionalised carbazole-based bipolar host materials was studied both in solution and in the solid-state. The restriction of intramolecular rotation of the molecules upon protonation of the pyridyl-moiety together with easier planarization of the protonated acceptor and the donor moieties and relocalisation of the LUMO orbital on the protonated species was found to increase the fluorescence quantum yield from 16% to 80%. Additionally, in the solid-state, the J-type packing of the molecules further facilitated the increase in the fluorescence quantum yield from 1% to 49%. In both cases, the pronounced bathochromic spectral shift was observed indicating that the gap between the emissive state and the first triplet state of the molecules was diminished upon protonation. Therefore, implementing this strategy could further boost the development of future emitters. This journal is
Original language | English |
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Pages (from-to) | 1703-1712 |
Number of pages | 10 |
Journal | Materials Advances |
Volume | 3 |
Issue number | 3 |
DOIs | |
Publication status | Published - 7 Feb 2022 |
Publication type | A1 Journal article-refereed |
Publication forum classification
- Publication forum level 1
ASJC Scopus subject areas
- General Materials Science
- Chemistry (miscellaneous)
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CCDC 2080289: Experimental Crystal Structure Determination
Taipale, E. (Creator), Durandin, N. A. (Creator), Salunke, J. K. (Creator), Candeias, N. R. (Creator), Ruoko, T.-P. (Creator), Ward, J. S. (Creator), Priimagi, A. (Creator) & Rissanen, K. (Creator), Cambridge Crystallographic Data Centre, 27 Apr 2021
DOI: 10.5517/ccdc.csd.cc27tq3x
Dataset
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CCDC 2080288: Experimental Crystal Structure Determination
Taipale, E. (Creator), Durandin, N. A. (Creator), Salunke, J. K. (Creator), Candeias, N. R. (Creator), Ruoko, T.-P. (Creator), Ward, J. S. (Creator), Priimagi, A. (Creator) & Rissanen, K. (Creator), Cambridge Crystallographic Data Centre, 27 Apr 2021
DOI: 10.5517/ccdc.csd.cc27tq2w
Dataset
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CCDC 2080284: Experimental Crystal Structure Determination
Taipale, E. (Creator), Durandin, N. A. (Creator), Salunke, J. K. (Creator), Candeias, N. R. (Creator), Ruoko, T.-P. (Creator), Ward, J. S. (Creator), Priimagi, A. (Creator) & Rissanen, K. (Creator), Cambridge Crystallographic Data Centre, 27 Apr 2021
DOI: 10.5517/ccdc.csd.cc27tpyq
Dataset
Equipment
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Chemistry Labs for optical spectroscopy, analysis, and synthesis
Ruoko, T.-P. (Contact) & Efimov, A. (Contact)
Materials Science and Environmental EngineeringFacility/equipment: Facility
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Red Labs for soft photonic, robotic and energy materials
Priimägi, A. (Contact), Vivo, P. (Contact) & Nonappa, N. (Contact)
Materials Science and Environmental EngineeringFacility/equipment: Facility