Highly Scalable and Robust Mesa-Island-Structure Metal-Oxide Thin-Film Transistors and Integrated Circuits Enabled by Stress-Diffusive Manipulation

  • Kim, K.-T.; 
  • Moon, S.; 
  • Kim, M.; 
  • Jo, J.-W.; 
  • Park, C.-Y.; 
  • ... Park, Sung Kyu; 
  • 외 2명
Citations

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Citations

SCOPUS

19

초록

The increasing interest in flexible and wearable electronics has demanded a dramatic improvement of mechanical robustness in electronic devices along with high-resolution implemented architectures. In this study, a site-specific stress-diffusive manipulation is demonstrated to fulfill highly robust and ultraflexible amorphous indium–gallium–zinc oxide (a-IGZO) thin-film transistors (TFTs) and integrated circuits. The photochemically activated combustion sol–gel a-IGZO TFTs on a mesa-structured polyimide show an average saturation mobility of 6.06 cm2 V−1 s−1 and a threshold voltage of −0.99 V with less than 9% variation, followed by 10 000 bending cycles with a radius of 125 μm. More importantly, the site-specific monolithic formation of mesa pillar-structured devices can provide fully integrated logic circuits such as seven-stage ring-oscillators, meeting the industrially needed device density and scalability. To exploit the underlying stress-diffusive mechanism, a physical model is provided by using a variety of chemical, structural, and electrical characterizations along with multidomain finite-element analysis simulation. The physical models reveal that a highly scalable and robust device can be achieved via the site-specific mesa architecture, by enabling generation of multineutral layers and fine-tuning the accumulated stresses on specific element of devices with their diffusion out into the boundary of the mesa regions. © 2020 Wiley-VCH GmbH

키워드

amorphous oxide thin-film transistors; mesa-island structure; scalability; stress-diffusion; ultraflexibility; Chemical analysis; Computer circuits; Field effect transistors; Flexible electronics; II-VI semiconductors; Metals; Semiconducting indium compounds; Sols; Thin film transistors; Thin films; Threshold voltage; Timing circuits; Zinc oxide; Diffusive mechanisms; Electrical characterization; Implemented architectures; Mechanical robustness; Metal oxide thin-film transistors; Multidomain finite element analysis; Stage ring oscillators; Thin-film transistor (TFTs); Thin film circuits
제목
Highly Scalable and Robust Mesa-Island-Structure Metal-Oxide Thin-Film Transistors and Integrated Circuits Enabled by Stress-Diffusive Manipulation
저자
Kim, K.-T.; Moon, S.; Kim, M.; Jo, J.-W.; Park, C.-Y.; Kang, S.-H.; Kim, Y.-H.; Park, Sung Kyu
DOI
10.1002/adma.202003276
발행일
2020-10
유형
Article
저널명
Advanced Materials
권
32
호
40