Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference (한국전기전자재료학회:학술대회논문집)
- 2007.11a
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- Pages.429-429
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- 2007
Investigation on EO Characteristics of SiNx Thin Film Irradiated by Ion-beam
이온 빔 조사된 SiNx 박막의 전기 광학적 특성에 관한 연구
- Lee, Sang-Keuk (Yonsei Univ.) ;
- Oh, Byeong-Yun (Yonsei Univ.) ;
- Kim, Byoung-Yong (Yonsei Univ.) ;
- Han, Jin-Woo (Yonsei Univ.) ;
- Kim, Young-Hwan (Yonsei Univ.) ;
- Ok, Chul-Ho (Yonsei Univ.) ;
- Kim, Jong-Hwan (Yonsei Univ.) ;
- Han, Jeong-Min (Yonsei Univ.) ;
- Seo, Dae-Shik (Yonsei Univ.)
- 이상극 (연세대학교) ;
- 오병윤 (연세대학교) ;
- 김병용 (연세대학교) ;
- 한진우 (연세대학교) ;
- 김영환 (연세대학교) ;
- 옥철호 (연세대학교) ;
- 김종환 (연세대학교) ;
- 한정민 (연세대학교) ;
- 서대식 (연세대학교)
- Published : 2007.11.01
Abstract
For various applications of liquid crystal displays (LCDs), the uniform alignment of liquid crystal (LC) molecules on treated surfaces is significantly important. Generally, a rubbing method has been widely used to align the LC molecules on polyimide (PI) surfaces. Rubbed PI surfaces have suitable characteristics, such as uniform alignment. However, the rubbing method has some drawbacks, such as the generation of electrostatic charges and the creation of contaminating particles. Thus, we strongly recommend a non contact alignment technique for future generations of large high-resolution LCDs. Most recently, the LC aligning capabilities achieved by ultraviolet and ion-beam exposures which are non contact methods, on diamond-like carbon (DLC) inorganic thin film layers have been successfully studied because DLC thin films have a high mechanical hardness, a high electrical resistivity, optical transparency, and chemical inertness. In addition, nitrogen-doped DLC (NDLC) thin films exhibit properties similar to those of the DLC thin films and a higher thermal stability than the DLC thin films because C:N bonding in the NDLC thin filmsis stronger against thermal stress than C:H bonding in the DLC thin films. Our research group has already studied the NDLC thin films by an ion-beam alignment method. The