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Electro-Optical Properties of FFS Liquid Crystal Devices Aligned on an Organic Liquid Crystal Alignment Layer Irradiated with Non-Polarized UV Light

원문정보

편광되지 않은 자외선을 조사한 유기액정 배향막에 배향된 FFS 액정소자의 전기광학적 특성

Myung-Hyun Cho , Phil-Jung KIM

피인용수 : 0(자료제공 : 네이버학술정보)

초록

영어

In this study, two alignment methods were used to create a Fringe-Field Switching (FFS) mode liquid crystal device using an organic thin film (polyimide: PI) as an alignment layer. In addition, the electro-optical (EO) characteristics of the liquid crystal device manufactured in this way were investigated to evaluate the feasibility of mass production application of the technology. In general, the photo-alignment method using unpolarized ultraviolet rays can obtain a relatively low pretilt angle, so a liquid crystal device in FFS mode, which is a driving mode of the liquid crystal device that reflects the characteristics of liquid crystal alignment, was manufactured, and the liquid crystal has a high reactivity with the alignment film. Considering this, nematic liquid crystal (NLC) was used. In addition, in order to improve the misalignment, it was observed whether more stable orientation occurred by irradiating ultraviolet rays for an additional 1 to 3 hours in the aligned state. As a result of the experiment, it was found that NLC alignment occurs through a photodecomposition reaction caused by unpolarized UV irradiation oblique to the PI surface. In addition to the existing orientation method, UV irradiation was used to achieve a more stable orientation state and stable V-T curve and response characteristics. With liquid crystal alignment completed, more stable orientation characteristics and EO characteristics at the mass production level were obtained through additional UV irradiation for 3 hours. This method can further stabilize the orientation stability caused by existing UV irradiation through an additional process.

목차

ABSTRACT
1. Introduction
2. Experimentals
3. Results and Discussion
4. Conclusion
Acknowledgements
References

저자정보

  • Myung-Hyun Cho 서일대학교 전기공학과
  • Phil-Jung KIM 조선이공대학교 전자과

참고문헌

자료제공 : 네이버학술정보

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