Abstract
Organic light-emitting diodes (OLEDs) show promise for applications as high-quality self-emissive displays for portable devices such as cellular phones and personal organizers1,2,3,4. Although monochrome operation is sufficient for some applications, the extension to multi-colour devices—such as RGB (red, green, blue) matrix displays—could greatly enhance their technological impact. Multi-colour OLEDs have been successfully fabricated by vacuum deposition of small electroluminescent molecules, but solution processing of larger molecules (electroluminescent polymers) would result in a cheaper and simpler manufacturing process. However, it has proved difficult to combine the solution processing approach with the high-resolution patterning techniques required to produce a pixelated display. Recent attempts have focused on the modification of standard printing techniques, such as screen printing5,6,7 and ink jetting8, but those still have technical drawbacks. Here we report a class of electroluminescent polymers that can be patterned in a way similar to standard photoresist materials—soluble polymers with oxetane sidegroups that can be crosslinked photochemically to produce insoluble polymer networks in desired areas. The resolution of the process is sufficient to fabricate pixelated matrix displays. Consecutive deposition of polymers that are luminescent in each of the three RGB colours yielded a device with efficiencies comparable to state-of-the-art OLEDs and even slightly reduced onset voltages.
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References
Friend, R. H. et al. Electroluminescence in conjugated polymers. Nature 397, 121–128 (1999)
Heeger, A. J. Light emission from semiconducting polymers: light-emitting diodes, light-emitting electrochemical cells, lasers and white light for the future. Solid State Commun. 107, 673–679 (1998)
Kraft, A., Grimsdale, A. C. & Holmes, A. B. Angew. Chem. Int. Edn 37, 402–428 (1998)
Salbeck, J. Electroluminescence with organic compounds. Ber. Bunsenges. Phys. Chem. 100, 1667–1677 (1996)
Pardo, D. A., Jabbour, G. E. & Peyghambarian, N. Application of screen printing in the fabrication of organic light-emitting devices. Adv. Mater. 12, 1249–1252 (2000)
Birnstock, J. et al. Screen-printed passive matrix displays based on light-emitting polymers. Appl. Phys. Lett. 78, 3905–3907 (2001)
Birnstock, J. et al. Screen-printed passive matrix displays and multicolor devices. Proc. SPIE 4464, 68–73 (2001)
Haskal, E. et al. Ink jet printing of passive matrix polymer light-emitting displays. SID Digest Tech. Pap. 33, 776–779 (2002)
Seong, T. L. et al. A new patterning method for full-colour light-emitting diodes: laser-induced thermal imaging. SID Digest Tech. Pap. 33, 784–787 (2002)
Trattnig, C., Pogantsch, A., Langer, G., Kern, W. & Zojer, E. Polymer-based red, green and blue emitting devices fabricated by reductive photopatterning. Appl. Phys. Lett. 81, 4269–4271 (2002)
Müller, D. C. et al. Efficient blue organic light-emitting diodes with graded hole-transport layers. ChemPhysChem 1, 207–211 (2000)
Bayerl, M. S. et al. Cross-linkable hole transport materials—Preparation of multilayer organic light-emitting diodes by spincoating. Macromol. Rapid Commun. 20, 224–227 (1999)
Li, X. C. et al. A blue light emitting copolymer with charge transporting and photo-crosslinkable functional units. Synth. Met. 84, 437–438 (1997)
Le Barney, P., Bouche, C. M., Facoetti, H., Soyer, F. & Robin, P. Synthesis of side chain electroluminescent polymers and properties of devices including them. Proc. SPIE 3148, 160–169 (1997)
Bellmann, E. et al. New triarylamine-containing polymers as hole transport materials in organic light-emitting diodes: effect of polymer structure and crosslinking on device characteristics. Chem. Mater. 10, 1668–1676 (1998)
Jiang, X., Liu, S., Ma, H. & Jen, A. K. High-performance blue light-emitting diode based on a binaphthyl-containing polyfluorene. Appl. Phys. Lett. 76, 1813–1815 (2000)
Bacher, A. et al. Photo-cross-linked triphenylenes as novel insoluble hole transport materials in organic LEDs. Macromolecules 32, 4551–4557 (1999)
Li, W. et al. Covalently interlinked organic LED transport layers via spin-coating/siloxane condensation. Adv. Mater. 11, 730–734 (1999)
Chen, J. P. et al. Efficient, blue light-emitting diodes using cross-linked layers of polymeric arylamine and fluorene. Synth. Met. 107, 129–135 (1999)
Becker, H., Heun, S., Treacher, K., Büsing, A. & Falcou, A. Materials and inks for full-colour PLED displays. SID Digest Tech. Pap. 33, 780–782 (2002)
Fouassier, J-P. Photoinitiation, Photopolymerization, and Photocuring: Fundamentals and Applications 102–144 (Hanser/Gardner, Cincinnati, 1995)
Sasaki, H. & Crivello, J. V. The synthesis, characterization, and photoinitiated cationic polymerization of difunctional oxetanes. J. Macromol. Sci. A 29, 915–930 (1992)
Penczek, S. & Kubisa, P. in Comprehensive Polymer Science (ed. Allen, G.) Vol. III, 751–786 (Pergamon, Oxford, 1989)
Treacher, K. et al. Conjugated polymers containing spirobifluorene units and fluorene units, and the use thereof. German patent application DE 2001-10114477; WO 2002-077060.
Acknowledgements
Partial financial support was granted by the Deutsche Forschungsgemeinschaft, the Bundesministerium für Bildung und Forschung, the Fonds der Chemischen Industrie (Kekule grant for N.R.), and the Bavarian government through ‘Neue Werkstoffe’.
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Müller, C., Falcou, A., Reckefuss, N. et al. Multi-colour organic light-emitting displays by solution processing. Nature 421, 829–833 (2003). https://doi.org/10.1038/nature01390
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DOI: https://doi.org/10.1038/nature01390
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