Scaling and Optimization of Gravure-Printed Silver Nanoparticle Lines for Printed Electronics

作者: D. Sung , A. de la Fuente Vornbrock , V. Subramanian

DOI: 10.1109/TCAPT.2009.2021464

关键词:

摘要: Printed electronics promises to enable new applications such as RFID tags, displays and various types of sensors. Critical the development printed is establishment a manufacturable printing technique with high resolution throughput. Gravure high-speed roll-to-roll that has many characteristics necessary for viable process. We present first systematic study on scaling optimization conductive lines electronics, especially viscosity nanoparticle inks. demonstrate gravure-printed lines, which are potentially suitable use in thin-film transistor (TFT) based circuits well passive components. several trends observed by varying cell ink parameters, compare two different techniques lines. examine current limits potential viability scalability gravure electronics.

参考文章(14)
Arved C Hübler, F Doetz, Heiko Kempa, Howard E Katz, Matthias Bartzsch, Nicole Brandt, I Hennig, Uta Fügmann, Suresh Vaidyanathan, Jimmy Granstrom, S Liu, A Sydorenko, Tino Zillger, Georg Schmidt, Karin Preißler, Elsa Reichmanis, Peter Eckerle, F Richter, Thomas Fischer, Ulrich Hahn, Ring oscillator fabricated completely by means of mass-printing technologies Organic Electronics. ,vol. 8, pp. 480- 486 ,(2007) , 10.1016/J.ORGEL.2007.02.009
R. Patel, H. Benkreira, Gravure roll coating of newtonian liquids Chemical Engineering Science. ,vol. 46, pp. 751- 756 ,(1991) , 10.1016/0009-2509(91)80181-W
Dan Soltman, Vivek Subramanian, Inkjet-printed line morphologies and temperature control of the coffee ring effect. Langmuir. ,vol. 24, pp. 2224- 2231 ,(2008) , 10.1021/LA7026847
Xiuyan Yin, Satish Kumar, Flow visualization of the liquid emptying process in scaled-up gravure grooves and cells Chemical Engineering Science. ,vol. 61, pp. 1146- 1156 ,(2006) , 10.1016/J.CES.2005.07.039
C.A. Powell, M.D. Savage, P.H. Gaskell, Modelling the Meniscus Evacuation Problem in Direct Gravure Coating Chemical Engineering Research and Design. ,vol. 78, pp. 61- 67 ,(2000) , 10.1205/026387600527086
Dirk Zielke, Arved C. Hübler, Ulrich Hahn, Nicole Brandt, Matthias Bartzsch, Uta Fügmann, Thomas Fischer, Janos Veres, Simon Ogier, Polymer-based organic field-effect transistor using offset printed source/drain structures Applied Physics Letters. ,vol. 87, pp. 123508- ,(2005) , 10.1063/1.2056579
M. Pudas *, J. Hagberg, S. Leppävuori, Roller-type gravure offset printing of conductive inks for high-resolution printing on ceramic substrates International Journal of Electronics. ,vol. 92, pp. 251- 269 ,(2005) , 10.1080/00207210500102930
N Kapur, A parametric study of direct gravure coating Chemical Engineering Science. ,vol. 58, pp. 2875- 2882 ,(2003) , 10.1016/S0009-2509(03)00136-2
Hadj Benkreira, Olivier Cohu, Direct forward gravure coating on unsupported web Chemical Engineering Science. ,vol. 53, pp. 1223- 1231 ,(1998) , 10.1016/S0009-2509(97)00446-6
Daniel Huang, Frank Liao, Steven Molesa, David Redinger, Vivek Subramanian, Plastic-Compatible Low Resistance Printable Gold Nanoparticle Conductors for Flexible Electronics Journal of The Electrochemical Society. ,vol. 150, ,(2003) , 10.1149/1.1582466