Organic semiconductor device and method of manufacturing the same
A low-cost and efficient process producing improved organic electronic devices such as transistors that may be used in a variety of applications is described. The applications may include radio frequency identification (RFID) devices, displays and the like. In one embodiment, the improved process is...
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Main Authors | , |
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Format | Patent |
Language | English |
Published |
15.02.2011
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Abstract | A low-cost and efficient process producing improved organic electronic devices such as transistors that may be used in a variety of applications is described. The applications may include radio frequency identification (RFID) devices, displays and the like. In one embodiment, the improved process is implemented by flash annealing a substrate with an energy having wavelengths ranging from about 250 nm to about 1100 nm or higher. In this flash annealing process energy having wavelengths from about 250 nm to about 350 nm or higher is substantially prevented from irradiating the substrate. |
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AbstractList | A low-cost and efficient process producing improved organic electronic devices such as transistors that may be used in a variety of applications is described. The applications may include radio frequency identification (RFID) devices, displays and the like. In one embodiment, the improved process is implemented by flash annealing a substrate with an energy having wavelengths ranging from about 250 nm to about 1100 nm or higher. In this flash annealing process energy having wavelengths from about 250 nm to about 350 nm or higher is substantially prevented from irradiating the substrate. |
Author | Mohapatra, Siddharth Wenz, Robert P |
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References | Ping, Liu, et al.: "Enabling Gate Dielectric Design for All Solution-Processed, High-Performance, Flexible Organic thin-Film Transistors" Journal of the American Chemical Society, vol. 128, No. 14, Mar. 10, 2006, pp. 4554-4555, XP007907662, ISSN: 0002-7863, p. 4554; figure 1. Harmon (2005/0269407) 20051200 Cain et al. (2009/0166612) 20090700 Oda et al. (2004/0110321) 20040600 Photonic Curing System for Printed Electronics, NovaCentrix, No Dtae, pp. 6. Gong et al. (2008/0169464) 20080700 Schroder et al. (2008/0020304) 20080100 Mohapatra et al. (2008/0311698) 20081200 Blosse et al. (6635566) 20031000 Iwata (6091152) 20000700 Miyashita et al. (6821553) 20041100 Chaoui et al. (2005/0205202) 20050900 Advanced Curing for Printed Electronics, NovaCentrix, No Date, pp. 4. Inoue et al. (2007/0194302) 20070800 Wolk et al. (6485884) 20021100 Foggiato et al.-Millisecond flash annealing: Applications for USJ formation and optimization of device electrical characteristics, Materials Science and Engineering B, vol. 124-125, pp. 219-222, Dec. 5, 2005. Baba (5565379) 19961000 Blache et al. (2008/0197343) 20080800 Fujimori et al. (2007/0252229) 20071100 Weng et al. (2005/0026344) 20050200 Ko Seung et al., "Air stable high resolution organic transistors by selective laser sintering of ink-jet printed metal nanoparticles" Applied Physics Letters, AIP, Maerican Institute of Physics, Melville, NY, vol. 90, No. 14, Apr. 3, 2007, pp. 141103-1-1411-3-3, XP012093905, ISSN: 0003-6951, pp. 141103-2; figure 1. Johnson et al. (2006/0216193) 20060900 Honda et al. (2010/0244015) 20100900 Zhang, Quitao, Li, Sha, Investigation of the potential of organic circuit for RFID tags, University of California Berkeley, No Date, pp. 3. Noguchi et al. (6723631) 20040400 Harper et al. (5130274) 19920700 Yiliang, Wu, et al.: "Organic Thin-Film Transistors with Contacts Printed From Metal Nanoparticles" Materials Research Society Symposium Proceedings, Materials Research Society, Pittsburg, PA, vol. 871E, 1 Jan. 2005, XP007907659, ISN: 0272-9172, p. 12.3.2-p. 12.3.4, abstract. Lin (2006/0094178) 20060500 Wu (2007/0020798) 20070100 Beigel et al. (2007/0018832) 20070100 Jackson (7262384) 20070800 Arai et al. (7250365) 20070700 Notice of Allowance mailed Nov. 15, 2010 from U.S. Appl. No. 11/764,362, filing date Jun. 18, 2007. Dimmler et al. (2007/0040165) 20070200 Ko et al.-Air stable high resolution organic transistors by selective laser sintering of ink-jet printed metal nanoparticles, Applied Physics Letters, vol. 90, pp. 141103-1-141103-3, Apr. 2007. Yang et al. (2004/0033641) 20040200 Foggiato, J. et al.: "Millisecond flash annealing: Applications for USJ formation and optimization of devise electrical characteristics", Materials Science and Engineering B, Elsevier Sequoia, Lausanne, CH, vol. 124-125, Dec. 5, 2005, pp. 219-222, XP025304817, ISSN: 0921-5107, p. 219, abstract. |
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