Crystallization-Enhanced Emission and Room-Temperature Phosphorescence of Cyclic Triimidazole-Monohexyl Thiophene Derivatives

The development of organic room-temperature phosphorescent (ORTP) materials represents an active field of research due to their significant advantages with respect to their organometallic counterparts. Two cyclic triimidazole ( ) derivatives bearing one and three hexyl-thiophene moieties, and , have...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2022-12, Vol.28 (1), p.140
Hauptverfasser: Malpicci, Daniele, Forni, Alessandra, Cariati, Elena, Inoguchi, Riku, Marinotto, Daniele, Maver, Daniele, Turco, Federico, Lucenti, Elena
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Sprache:eng
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Zusammenfassung:The development of organic room-temperature phosphorescent (ORTP) materials represents an active field of research due to their significant advantages with respect to their organometallic counterparts. Two cyclic triimidazole ( ) derivatives bearing one and three hexyl-thiophene moieties, and , have been prepared and characterized. Both compounds display enhanced quantum yields in their crystalline form with respect to those in a solution state, revealing crystallization-enhanced emissive (CEE) behavior. Importantly, while single fluorescence is observed in solution, crystalline powders also feature dual ORTP, whose respective molecular and aggregate origins have been disclosed through X-ray diffraction analysis and DFT/TDDFT calculations. The relation between the photophysical properties of and its crystallinity degree has been confirmed by a decrease in photoluminescent quantum yield (Φ) and loss of vibronic resolution when its crystals are ground in a mortar, revealing mechanochromic behavior and confirming CEE features.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules28010140