상세 보기
- Song Okin;
- Rhee Dongjoon;
- Kim Jihyun;
- Jeon Youngseo;
- Mazanek Vlastimil;
- ... KWON, YONGHYUN ALBERT;
- 외 5명
WEB OF SCIENCE
0초록
Inkjet printing is a cost-effective and scalable way to assemble colloidal materials into desired patterns in a vacuum- and lithography-free manner. Two-dimensional (2D) nanosheets are a promising material category for printed electronics because of their compatibility with solution processing for stable ink formulations as well as a wide range of electronic types from metal, semiconductor to insulator. Furthermore, their dangling bond-free surface enables atomically thin, electronically-active thin films with van der Waals contacts which significantly reduce the junction resistance. Here, we demonstrate all inkjet-printed thin-film transistors consisting of electrochemically exfoliated graphene, MoS2, and HfO2 as metallic electrodes, a semiconducting channel, and a high-k dielectric layer, respectively. In particular, the HfO2 dielectric layer is prepared via two-step; electrochemical exfoliation of semiconducting HfS2 followed by a thermal oxidation process to overcome the incompatibility of electrochemical exfoliation with insulating crystals. Consequently, all inkjet-printed 2D nanosheets with various electronic types enable high-performance, thin-film transistors which demonstrate field-effect mobilities and current on/off ratios of similar to 10 cm(2) V-1 s(-1) and > 10(5), respectively, at low operating voltage.
- 제목
- All inkjet-printed electronics based on electrochemically exfoliated two-dimensional metal, semiconductor, and dielectric
- 저자
- Song Okin; Rhee Dongjoon; Kim Jihyun; Jeon Youngseo; Mazanek Vlastimil; Soll Aljoscha; KWON, YONGHYUN ALBERT; 조정호; Kim Yong-Hoon; Kang Joohoon; Sofer Zdenek
- 발행일
- 2022-09
- 저널명
- npj 2d Materials and Applications
- 권
- 6
- 호
- 1