Publication

Semiconductor Materials and Devices Lab

Paper

  • 2023
  • Neuromorphic computing based on halide perovskites
  • Nature Electronics, 6, 949–962 (2023)
  • Maria Vasilopoulou*, Abd Rashid bin Mohd Yusoff*, Yang Chai, Michael-Alexandros Kourtis, Toshinori Matsushima, Nicola Gasparini, Rose Du, Feng Gao, Mohammad Khaja Nazeeruddin, Thomas D Anthopoulos*, Yong-Young Noh*
Mechanical Stability of Organic Field-Effect Transistors on Ultra-Thin Polymer Substrate
저자
Eul-Yong Shin, Yong-Young Noh
저널명
Journal of Nanoscience and Nanotechnology, 17, 5679-5682 (2017)
년도
2017

[Abstract]

The mechanical properties and electrical characteristics of solution processed organic field-effect transistors (OFETs) on ultra-thin polymer substrate are demonstrated. An ultra-thin substrate of Parylene-C provided extreme flexibility, lightness, stretchability, and conformability. Two organic semiconductors, DPPT-TT as p-channel and P(NDI2OD-T2) as n-channel were used as active layers in the OFETs. Electrical performance was comparable to conventional devices on glass substrate. Various stability issues were also investigated. Mobility was slightly decreased by peel off and strain of the ultra-thin substrate, and significantly decreased by wrinkling.