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Spectroscopic Properties, Excitation, and Electron Transfer in an Anionic Water-Soluble Poly(fluorene-alt-phenylene)-perylenediimide Copolymer (2012)
Journal Article
Marques, A. T., Burrows, H. D., Sergio Seixas de Melo, J., Valente, A. J., Justino, L. L., Scherf, U., …Monkman, A. P. (2012). Spectroscopic Properties, Excitation, and Electron Transfer in an Anionic Water-Soluble Poly(fluorene-alt-phenylene)-perylenediimide Copolymer. Journal of Physical Chemistry B (Soft Condensed Matter and Biophysical Chemistry), 116(25), 7548-7559. https://doi.org/10.1021/jp3000703

Dinuclear iridium(III) complexes of cyclometalated fluorenylpyridine ligands as phosphorescent dopants for efficient solution-processed OLEDs (2012)
Journal Article
M'hamedi, A., Batsanov, A. S., Fox, M. A., Bryce, M. R., Abdullah, K., Al-Attar, H. A., & Monkman, A. P. (2012). Dinuclear iridium(III) complexes of cyclometalated fluorenylpyridine ligands as phosphorescent dopants for efficient solution-processed OLEDs. Journal of materials chemistry, 22(27), 13529-13540. https://doi.org/10.1039/c2jm31143g

Ultrahigh Efficiency Fluorescent Single and Bi-Layer Organic Light Emitting Diodes: The Key Role of Triplet Fusion (2012)
Journal Article
Chiang, C., Kimyonok, A., Etherington, M. K., Griffiths, G. C., Jankus, V., Turksoy, F., & Monkman, A. P. (2013). Ultrahigh Efficiency Fluorescent Single and Bi-Layer Organic Light Emitting Diodes: The Key Role of Triplet Fusion. Advanced Functional Materials, 23(6), 739-746. https://doi.org/10.1002/adfm.201201750

A new family of anthracene core, highly fluorescent emitters is synthesized which include diphenylamine hole transport end groups. Using a very simple one or two layer organic light emitting diode (OLED) structure, devices without outcoupling achieve... Read More about Ultrahigh Efficiency Fluorescent Single and Bi-Layer Organic Light Emitting Diodes: The Key Role of Triplet Fusion.