Electrical conductivity enhancement of epitaxially grown TiN thin films

  • Khim, Yeong Gwang; 
  • Park, Beomjin ; 
  • Heo, Jin Eun; 
  • Khim, Young Hun; 
  • Khim, Young Rok; 
  • ... Chang, Seo Hyoung; 
  • 외 4명
Citations

WEB OF SCIENCE

18
Citations

SCOPUS

17

초록

Titanium nitride (TiN) presents superior electrical conductivity with mechanical and chemical stability and compatibility with the semiconductor fabrication process. Here, we fabricated epitaxial and polycrystalline TiN (111) thin films on MgO (111), sapphire (001), and mica substrates at 640℃ and room temperature by using a DC sputtering, respectively. The epitaxial films show less amount of surface oxidation than the polycrystalline ones grown at room temperature. The epitaxial films show drastically reduced resistivity (~ 30 micro-ohm-cm), much smaller than the polycrystalline films. Temperature-dependent resistivity measurements show a nearly monotonic temperature slope down to low temperature. These results demonstrate that high-temperature growth of TiN thin films leads to significant enhancement of electrical conductivity, promising for durable and scalable electrode applications. © 2023, The Korean Physical Society.

키워드

DC sputtering; Electrical conductivity; Electrode material; Epitaxial film; TiN; TITANIUM NITRIDE; RESISTIVITY; DEPOSITION; ELECTRODE; DEVICES
제목
Electrical conductivity enhancement of epitaxially grown TiN thin films
저자
Khim, Yeong Gwang; Park, Beomjin ; Heo, Jin Eun; Khim, Young Hun; Khim, Young Rok; Gu, Minseon; Rhee, Tae Gyu; Chang, Seo Hyoung; Han, Moonsup; Chang, Young Jun
DOI
10.1007/s40042-023-00729-6
발행일
2023-03
유형
Article
저널명
Journal of the Korean Physical Society
권
82
호
5
페이지
486 ~ 490

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