Stimuli responsive aggregation-induced emission of bis(4-((9 H-fluoren-9-ylidene)methyl)phenyl)thiophene single crystals

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Abstract

Aggregation induced emission (AIE) materials are in the spotlight of current materials development due to their unique properties and potential applications in light-emitting devices, bio-imaging and sensors. In this work we synthesised and thoroughly studied a novel luminogen based on bis(4-((9H-fluoren-9-ylidene)methyl)phenyl)thiophene (BFMPT) showing polymorph-dependent AIE. BFMPT crystallises in two polymorphs of different crystal shapes and colours, however both of them are highly-luminescent with the same photoluminescence (PL) quantum yield of 40%. Polymorph I can undergo irreversible phase transition to polymorph II. Deep quantum chemical study of BFMPT revealed that inter- and intramolecular interactions in both polymorphs are very similar and the main contributor to the optical difference between the polymorphs is a variation of BFMPT conformation. The thermal stress was demonstrated to negligibly affect the PL efficiency of BFMPT crystals. Due to high intrinsic torsional freedom and high solid-state PL efficiency, BFMPT could serve as a basis for the molecular design of high performance AIE materials.

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Kazantsev, M. S., Sonina, A. A., Koskin, I. P., Sherin, P. S., Rybalova, T. V., Benassi, E., & Mostovich, E. A. (2019). Stimuli responsive aggregation-induced emission of bis(4-((9 H-fluoren-9-ylidene)methyl)phenyl)thiophene single crystals. Materials Chemistry Frontiers, 3(8), 1545–1554. https://doi.org/10.1039/c9qm00198k

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