Evolution of amorphous carbon films into nano-crystalline graphite with increasing growth temperature in plasma-enhanced chemical vapor deposition

Evolution of amorphous carbon films into nano-crystalline graphite with increasing growth temperature in plasma-enhanced chemical vapor deposition
  • Kim, Jin-Hyeok; 
  • Lee, Je-Ho; 
  • Kang, Yu-Seon; 
  • Jang, Kyung-Tae; 
  • Im, Jiwoon; 
  • ... Seong, Maeng-Je
Citations

WEB OF SCIENCE

13
Citations

SCOPUS

14

초록

Amorphous carbon films (ACFs) have recently emerged as one of the best candidates for etching-resistant hardmask materials in advanced semiconductor manufacturing processes. Etching resistivity of ACFs is known to be improved by controlling the relative abundance between sp(2) and sp(3) bonds. We have investigated the relative abundance between sp(2) and sp(3) bonds in several ACFs, fabricated by plasma-enhanced chemical vapor deposition at different temperatures, which were analyzed by using X-ray photoemission spectroscopy, Raman spectroscopy, and transmission electron microscopy. We found that the relative abundance of sp(2) bond increased as the growth temperature was raised. Furthermore, the ACFs eventually evolved into nano-crystalline graphite with increasing growth temperature.

키워드

Amorphous carbon film; Nano-crystalline graphite; X-ray photoemission spectroscopy; Raman spectroscopy; High-resolution transmission electron microscopy
제목
Evolution of amorphous carbon films into nano-crystalline graphite with increasing growth temperature in plasma-enhanced chemical vapor deposition
제목 (타언어)
Evolution of amorphous carbon films into nano-crystalline graphite with increasing growth temperature in plasma-enhanced chemical vapor deposition
저자
Kim, Jin-Hyeok; Lee, Je-Ho; Kang, Yu-Seon; Jang, Kyung-Tae; Im, Jiwoon; Seong, Maeng-Je
DOI
10.1016/j.cap.2020.12.012
발행일
2021-03
유형
Article
저널명
Current Applied Physics
권
23
호
1
페이지
52 ~ 56