OEC-07: Peer reviewed papers
The problem
The peer-reviewed track of the 2007 Organic Electronics Conference (OEC-07) contained 26 high quality papers selected by the conference peer-review committee. The peer-review committee consisted of:
  • Dr Reinhard Baumann, Technische Universität Chemnitz
  • Dr Jeremy Burroughes, Cambridge Display Technology
  • Craig Cruickshank, cintelliq
  • Dr Antonio Facchetti, Northwestern University
  • Dr Jiro Kasahara, Sony Corporation
  • Bill MacDonald, DuPont Teijin Film
  • Dr Takao Someya, University of Tokyo
Participants at OEC-07 received the papers in their Conference Proceedings but anyone who did not attend could only obtain the papers by purchasing the full set of Conference Proceedings.

The solution
The OEC-07 Peer-reviewed papers is a collection of just the papers selected for presentation in the peer-review track and poster session of the conference, made available at a very affordable price.

The 20 oral papers and six poster papers cover a wide range of subjects relating to organic electronics and organic semiconductors from some of the leading researchers in the field.

Three of the peer-reviewed papers were shortlisted for the 2007 Organic Semiconductor Industry Awards Best Peer Review Paper category. These are highlighted in bold in the contents list below. The winning paper was submitted by LG Philips LCD.

Contents list
  • Solution-Processed n-Channel Organic Transistors Enabled by Rylene Semiconductors and UV-Curable Polymeric Dielectrics
    Antonio Facchetti, Polyera Corp, USA

  • Solution Processed Organic Thin-Film Transistors for Active Matrix Color Liquid Crystal Displays
    Min-Joo Kim, Dae-Won Kim, Young Hoon Noh, Han Saem Kang, Hochul Kang, Chang-Dong Kim, InByeong Kang, LG Philips LCD, Korea

  • Monolayer polymeric field-effect transistors
    Aleksandar Ivanov, Arne Hoppe, Jürgen Fritz, Veit Wagner Jacobs University, Germany

  • Experimental characterization of in-plane deformation of flexible substrates for optical lithography using a novel experimental setup
    Peter Giesen, J Heerens, MM Kleinjan, R Schmits, M Péter, ER Meinders, Holst Centre , TNO, The Netherlands

  • Ultra-Thin Flexible OLED Device
    Cristina Tanase, Herbert Lifka, Dave McCulloch, Peter van de Weijer, Philips Research, The Netherlands; Ian French, Philips Research Laboratories, UK

  • High Photocurrent Organic Solid State Photovoltaics
    Yi-Chun Chen, Yi-Yang Lin, Bao-Tsan Ko, and Ching Ting, Material and Chemical Research Laboratories, ITRI, Taiwan

  • Polymer photovoltaics: First steps to large scale R2R-production using wet coating techniques
    Karin Schultheis; Presenter: Mario Schrödner TITK Rudolstadt, Germany

  • Realization of photosensitive sensors based on Ds2T oligomer
    Tomas Fiorido, Marc Bendahan, Khalifa Aguir, Université Paul Cézanne, France; Jorg Ackermann, Université de la Méditerranée, France; Sébastien Saunaur, CMP-GC, France

  • Photodetector based on switching of charge carrier mobility in polymers
    Martin Weiter, Martin Vala, Oldřich Zmeškal, Jiří Navrátil, Brno University of Technology, Czech Republic; Petr Toman, Stanislav Nešpůrek; Institute of Macromolecular Chemistry, Academy of Sciences of the Czech Republic

  • 256 x 256 pixels active matrix photo detector combing an amorphous Silicon thin film transistor array with organic photo diodes
    Jens Fuerst, D Henseler, S Tedde, E Zaus, Siemens AG, Germany

  • On-Substrate Synthesis of Organic Metal Films, Electrodes, and Circuits
    Tatsuo Hasegawa, AIST, Japan

  • High performance field-effect transistors based on Plexcore™ OS-2: Design and optimization
    Shijun Jia, R Stegamat, J Bernkopf, D Laird, Plextronics, USA

  • Resistive-type polymer non-volatile memory based on polyimide and PCBM solution
    Byeong-Ok Cho, Takahiro Yasue, Moon-Sook Lee, Manhyoung Ryoo, Sung-Tae Kim, Woosung Han, Samsung Advanced Institute of Technology,   Korea

  • Polymer with Molecular Switching Mechanism for Nonvolatile Memory Applications
    Alexei Zherebov, Alexei Lachinov, Institute of Physics of Molecules and Crystals Ufa Scientific Centre of Russian Academy of Science, Russia; Jan Genoe, IMEC, Belgium; Alexei Tameev, AN Frumkin Institute of Physical Chemistry and Electrochemistry of Russian Academy of Science, Russia

  • Patterned nucleation control in vacuum deposition of organic molecules
    WC Wang, DY Zhong, J Zhu, H Fuchs, Lifeng Chi, CeNTech (Physikalisches Institut and Center for Nanotechnology), Universität Münster, Germany; F Kalischewski, A Heuer, Institut für Physikalische Chemie, Universität Münster, Germany

  • Printed Electronics on Paper
    Heiko Kempa, Fraunhofer IZM, Germany; M Wagner, S Rudolph, M Stanel, B Trnovec, M Bartzsch, K Weigelt, U Hahn, Institute for Print and Media Technology, Chemnitz University of Technology, Germany; T Zillger, U Fügmann, T Fischer, A Huebler, printed systems GmbH, Germany

  • Printing process for Lithium-ion electrodes elaboration
    Franck Medlege, Hélène Rouault, Commissariat à l’Energie Atomique, France; Anne Blayo, and Naceur Belgacem, EFPG Ecole Française de Papeterie et des industries Graphiques, France

  • Solution processed red phosphorescent organic light emitting devices
    Rupasree Ragini Das, Ohyun Kwon, Heekyung Kim, Mugyeom Kim, Younghun Byun, Woo Sung Jeon, Eunsil Han, Yi-Yeol Lyu, Sungkee Kang, Shinichiro Tamura, Samsung Advanced Institute of Technology, Korea

  • Small Polymeric Nano-Dot Enhanced Pure-White Organic Light Emitting Diode
    Jwo-Huei Jou, Wei-Ben Wang, Mao-Feng Hsu, Department of Materials Science and Engineering, National Tsing Hua University, Taiwan; Jing-Jong Shyue, Research Center for Applied Sciences Academia Sinica, Taiwan; He Wang, Department of Materials Science and Engineering, Tsinghua University, China

  • Charge Generation Layer in Stacked Organic Emitting Devices
    MK Fung, MY Chan, SL Lai, CS Lee, and ST Lee, Center of Super-Diamond and Advanced Films (COSDAF), and Department of Physics & Materials Science, City University of Hong Kong, China

  • Solution processable linear terphenylene semiconductors for TFTs
    Makoto Watanabe and Tomokazu Ohashi, Tosoh Corporation

  • OTFT Digital Circuit Design Based on Dynamic Logic
    Jingyi Zhang, Qing Wu, Qinru Qiu, Binghamton University, State University of New York, USA

  • Electrochemical and Spectroelectrochemical Studies on Redox Intermediates of Organic Charge-Transporting Materials and Their Relationship with Device Performances
    Woo Sung Jeon, Hyouk Soo Han, Samsung Advanced Institute of Technology, Korea; Young Kook Kim, Seok-Hwan Hwang, Samsung SDI, Korea

  • High Efficiency Phosphorescent White Organic Light-Emitting Diodes Using a Novel Iridium(III) (dibenzo[f,h]quinoline)2(pentane-2,4-ionate)
    Jwo-Huei Jou, Zhao-Chin Wong, Mao-Feng Hsu and Wei-Ben Wang, National Tsing-Hua University, Taiwan; Chih-Lung Chin and Wan-Chi Chen Industrial Technology Research Institute, Taiwan

  • Synthesis of Colourless Polyimide with Bulky Group
    Cheng-Chung Chen, Yu-Chiao Chung, Jyh-Ming Hwu, Ren-Kuen Chang and Mao-Feng Hsu, Industrial Technology Research Institute, Taiwan; Wei-Ben Wang and Jing-Jong Shyue, Research Center for Applied Sciences Academia Sinica, Taiwan; Shi-Min Shau, Ru-Jong Jeng and Shenghong A. Dai, National Chung Hsing University, Taiwan

  • Novel Polymer-Capped Gold Nanoparticles Utilizing for a Well- Reproducible Organic Bistable Memory Device
    Jun-Rong Chen and Gue-Wuu Hwang, Industrial Technology Research Institute, Taiwan; Heng-Tien Lin and Yi-Jen Chan, Industrial Technology Research Institute and National Central University, Taiwan



Buy now
The OEC-07: Peer-review papers is available in electronic format (PDF) at a price of just £100.00 (+VAT) for a 20-user licence.

To purchase this product, contact Anna Volund on +44 (0)1223 421525 for more information.

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Peer-reviewed papers: at a glance
Total
Pages 110+
Papers 26
Format PDF



Cover of Peer-reviewed papers Report cover

sample page from OEC-07 Peer Review Papers Sample page
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sample page from OEC-07 Peer Review Papers Sample page
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sample page from OEC-07 Peer Review Papers Sample page
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