Publication: Phosphorescent K$^3$ -(N^C^C)-Gold(III) Complexes: Synthesis, Photophysics, Computational Studies and Application to Solution-Processable OLEDs
Phosphorescent K$^3$ -(N^C^C)-Gold(III) Complexes: Synthesis, Photophysics, Computational Studies and Application to Solution-Processable OLEDs
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Beucher, H., Kumar, S., Kumar, R., Merino, E., Hu, W., Stemmler, G., Cuesta‐Galisteo, S., González, J. A., Bezinge, L., Jagielski, J., Shih, C.-J., & Nevado, C. (2020). Phosphorescent K$^3$ -(N^C^C)-Gold(III) Complexes: Synthesis, Photophysics, Computational Studies and Application to Solution-Processable OLEDs. Chemistry, 26(72), 17604–17612. https://doi.org/10.1002/chem.202003571
Abstract
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Efficient OLED devices have been fabricated using organometallic complexes of platinum group metals. Still, the high material cost and low stability represent central challenges for their application in commercial display technologies. Based on its innate stability, gold(III) complexes are emerging as promising candidates for high‐performance OLEDs. Here, a series of alkynyl‐, N‐heterocyclic carbene (NHC)‐ and aryl‐gold(III) complexes stabilized by a κ3‐(N^C^C) template have been prepared and their photophysical properties have been c
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Beucher, H., Kumar, S., Kumar, R., Merino, E., Hu, W., Stemmler, G., Cuesta‐Galisteo, S., González, J. A., Bezinge, L., Jagielski, J., Shih, C.-J., & Nevado, C. (2020). Phosphorescent K$^3$ -(N^C^C)-Gold(III) Complexes: Synthesis, Photophysics, Computational Studies and Application to Solution-Processable OLEDs. Chemistry, 26(72), 17604–17612. https://doi.org/10.1002/chem.202003571