High performance inkjet printed polymer CMOS integrated circuits

  • Baeg, Kang-Jun (Convergence Components & Materials Research Laboratory, Electronics Telecommunications Research Institute (ETRI)) ;
  • Kim, Dong-Yu (Heeger Center for Advanced Materials, Dept. of Materials Science and Engineering, Gwangju Institute of Science and Technology (GIST)) ;
  • Koo, Jae-Bon (Convergence Components & Materials Research Laboratory, Electronics Telecommunications Research Institute (ETRI)) ;
  • Jung, Soon-Won (Convergence Components & Materials Research Laboratory, Electronics Telecommunications Research Institute (ETRI)) ;
  • You, In-Kyu (Convergence Components & Materials Research Laboratory, Electronics Telecommunications Research Institute (ETRI)) ;
  • Noh, Yong-Young (Convergence Components & Materials Research Laboratory, Electronics Telecommunications Research Institute (ETRI))
  • Published : 2009.10.12

Abstract

Printed electronics are emerging technology to realize various microelectronic devices via a cost-effective method. Here we introduce high performance inkjet printed polymer field-effect transistors and application to complementary integrated circuits with p-type and n-type conjugated polymers. The performance of devices highly depends on the selection of dielectrics, printing condition and device architecture. The device optimization and performances of various integrated circuits, e.g., complementary inverters and ring oscillators will be mainly discussed in this talk.

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