MIT characteristic of VO₂ thin film deposited by ALD using vanadium oxytriisopropoxide precursor and H₂O reactant

MIT characteristic of VO2 thin film deposited by ALD using vanadium oxytriisopropoxide precursor and H2O reactant
  • Shin, Changhee
  • Lee, Namgue
  • Choi, Hyeongsu
  • Park, Hyunwoo
  • Jung, Chanwon
  • 외 8명
Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

VO₂ is an attractive candidate as a transition metal oxide switching material as a selection device for reduction of sneak-path current. We demonstrate deposition of nanoscale VO₂ thin films via thermal atomic layer deposition (ALD) with H₂O reactant. Using this method, we demonstrate VO₂ thin films with high-quality characteristics, including crystallinity, reproducibility using X-ray diffraction, and X-ray photoelectron spectroscopy measurement. We also present a method that can increase uniformity and thin film quality by splitting the pulse cycle into two using scanning electron microscope measurement. We demonstrate an ON / OFF ratio of about 40, which is caused by metal insulator transition (MIT) of VO₂ thin film. ALD-deposited VO₂ films with high film uniformity can be applied to next-generation nonvolatile memory devices with high density due to their metal-insulator transition characteristic with high current density, fast switching speed, and high ON / OFF ratio.

키워드

Atomic layer depositionVanadium dioxideMetal insulator transitionSneak-path currentSelection deviceSWITCHING PROPERTIESHIGH-DENSITYTRANSITIONDRIVEN
제목
MIT characteristic of VO₂ thin film deposited by ALD using vanadium oxytriisopropoxide precursor and H₂O reactant
제목 (타언어)
MIT characteristic of VO2 thin film deposited by ALD using vanadium oxytriisopropoxide precursor and H2O reactant
저자
Shin, ChangheeLee, NamgueChoi, HyeongsuPark, HyunwooJung, ChanwonSong, SeokhwiYuk, HyunwooKim, YoungjoonKim, Jong-WooKim, KeunsikChoi, YoungtaeSeo, HyungtakJeon, Hyeongtag
DOI
10.36410/jcpr.2019.20.5.484
발행일
2019-10
유형
Article
저널명
Journal of Ceramic Processing Research
20
5
페이지
484 ~ 489

파일 다운로드