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*
Transparent Zn Doped-CuI for High-Performance p-Channel Thin Film Transistors
저자
Ao Liu, Huihui Zhu, Yong-Young Noh*
저널명
SID Symposium Digest of Techniccal Papers
년도
2021

[Abstract]

Over the past decades, developing high-performance transparent p-type semiconductors has become one of the urgent tasks in electronic industry for the integration of complementary circuits and high-end displays. Unfortunately, there is no satisfied candidate reported to date. In this work, we reported a novel transparent p-type Zn-doped CuI semiconductor using low-temperature and low-cost solution process for high-performance transistors and circuits. The optimized transistors exhibited a high hole mobility of 5 cm2 V−1 s−1 and high on/off current ratio of ~107 with excellent operational stability and reproducibility. The integrated CMOS inverter delivered a high peak gain of ~60 with the low power consumption. This study paves the way for realizing transparent, flexible, and large-area integrated circuits with n-type metal-oxide semiconductors.