TY - JOUR
T1 - Curcuminoid Derivatives with a Donor-Acceptor-Donor Architecture
T2 - an Outstanding Platform for Highly-Efficient Near-Infrared Electroluminescence and Amplified Spontaneous Emission
AU - D'Aléo, Anthony
AU - Tang, Xun
AU - Kim, Dae Hyeon
AU - Valverde, Danillo
AU - Zaborova, Elena
AU - Canard, Gabriel
AU - Brosseau, Arnaud
AU - Mager, Loïc
AU - Clavier, Gilles
AU - Adachi, Chihaya
AU - Olivier, Yoann
AU - Ribierre, Jean Charles Maurice
N1 - Publisher Copyright:
© 2025 The Author(s). Advanced Optical Materials published by Wiley-VCH GmbH.
PY - 2025
Y1 - 2025
N2 - The development of high-efficiency near-infrared (NIR) emitters for organic light-emitting diodes (OLEDs) and organic semiconductor lasers has become an important target in organic photonics. Herein, it is demonstrated that donor-acceptor-donor borondifluoride curcuminoid derivatives represent a versatile and simple platform for the molecular engineering of high-efficiency NIR emitters combining thermally-activated delayed fluorescence (TADF) with excellent electroluminescence properties and amplified spontaneous emission (ASE) activity. A series of donor-acceptor-donor curcuminoid compounds containing triphenylamino-substituents for the donor side groups and various acceptor units in the meso position were designed and synthesized. The investigation of the effects of the molecular structure on the TADF properties show that the nature of the substituents enables a fine tuning of the emission wavelengths while maintaining high photoluminescence quantum yield values. These NIR TADF dyes were used in OLEDs with an external quantum efficiency of almost 1% for a maximum emission wavelength of 797 nm. They also show a low threshold tuneable amplified spontaneous emission between 725 and 900 nm. Overall, this study provides new essential insights to rationalize the TADF activity of this family of NIR emitters and offers important prospects for designing the next generation of NIR TADF-OLEDs and organic semiconductor laser materials.
AB - The development of high-efficiency near-infrared (NIR) emitters for organic light-emitting diodes (OLEDs) and organic semiconductor lasers has become an important target in organic photonics. Herein, it is demonstrated that donor-acceptor-donor borondifluoride curcuminoid derivatives represent a versatile and simple platform for the molecular engineering of high-efficiency NIR emitters combining thermally-activated delayed fluorescence (TADF) with excellent electroluminescence properties and amplified spontaneous emission (ASE) activity. A series of donor-acceptor-donor curcuminoid compounds containing triphenylamino-substituents for the donor side groups and various acceptor units in the meso position were designed and synthesized. The investigation of the effects of the molecular structure on the TADF properties show that the nature of the substituents enables a fine tuning of the emission wavelengths while maintaining high photoluminescence quantum yield values. These NIR TADF dyes were used in OLEDs with an external quantum efficiency of almost 1% for a maximum emission wavelength of 797 nm. They also show a low threshold tuneable amplified spontaneous emission between 725 and 900 nm. Overall, this study provides new essential insights to rationalize the TADF activity of this family of NIR emitters and offers important prospects for designing the next generation of NIR TADF-OLEDs and organic semiconductor laser materials.
KW - amplified spontaneous emission
KW - curcuminoid borondifluoride
KW - OLED
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U2 - 10.1002/adom.202500338
DO - 10.1002/adom.202500338
M3 - Article
AN - SCOPUS:105002372754
SN - 2195-1071
JO - Advanced Optical Materials
JF - Advanced Optical Materials
ER -