Carbene metal amide photoemitters: tailoring conformationally flexible amides for full color range emissions including white-emitting OLED

Conformationally flexible "Carbene-Metal-Amide" (CMA) complexes of copper and gold have been developed based on a combination of sterically hindered cyclic (alkyl)(amino)carbene (CAAC) and 6- and 7-ring heterocyclic amide ligands. These complexes show photoemissions across the visible spec...

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Veröffentlicht in:Chemical science (Cambridge) 2020-01, Vol.11 (2), p.435-446
Hauptverfasser: Romanov, Alexander S, Jones, Saul T. E, Gu, Qinying, Conaghan, Patrick J, Drummond, Bluebell H, Feng, Jiale, Chotard, Florian, Buizza, Leonardo, Foley, Morgan, Linnolahti, Mikko, Credgington, Dan, Bochmann, Manfred
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Sprache:eng
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Zusammenfassung:Conformationally flexible "Carbene-Metal-Amide" (CMA) complexes of copper and gold have been developed based on a combination of sterically hindered cyclic (alkyl)(amino)carbene (CAAC) and 6- and 7-ring heterocyclic amide ligands. These complexes show photoemissions across the visible spectrum with PL quantum yields of up to 89% in solution and 83% in host-guest films. Single crystal X-ray diffraction and photoluminescence (PL) studies combined with DFT calculations indicate the important role of ring structure and conformational flexibility of the amide ligands. Time-resolved PL shows efficient delayed emission with sub-microsecond to microsecond excited state lifetimes at room temperature, with radiative rates exceeding 10 6 s −1 . Yellow organic light-emitting diodes (OLEDs) based on a 7-ring gold amide were fabricated by thermal vapor deposition, while the sky-blue to warm-white mechanochromic behavior of the gold phenothiazine-5,5-dioxide complex enabled fabrication of the first CMA-based white light-emitting OLED. Conformationally flexible "Carbene-Metal-Amide" (CMA) complexes of copper and gold show photoemissions across the visible spectrum, including mechanochromic behavior which led to the first CMA-based white light-emitting OLED.
ISSN:2041-6520
2041-6539
DOI:10.1039/c9sc04589a