원문정보
초록
영어
This experimental focus to characterize luminescence properties related to CNT (Carbon Nano Tube) element dispersedly implanted in ZnS-based phosphor thin film panel fabricated by a screen printing method. More specifically FE-SEM measurements, L-V(Luminescence vs. Voltage) and photo luminescence were carried out to determine an optimum value of CNT concentration and film thickness for the thin film structure of CNTーZnS:(Cu, Al) by the screen printing method. We confirmed that an optimum value of CNT concentration in the ZnS:(Cu, Al) film panel is about 0.75 wt% resulting that the electric conductivity is 1.6 times higher than that of pure CNT sample and showing that the luminescence intensity is increasing until the optimum concentration. Clearly, CNT is presenting in the luminescence process providing a pathway for the creation of hot electron and a channel for the electron-hole recombination but overly inserted CNT may hinder to produce the hot electron for making an avalanching process. In case of the overly doped CNT 1.0 wt% in the ZnS-based phosphor, the luminescence intensity is decreasing although the electric conductivity is exponentially increasing. Based on these results, we realized that hot electron occurred by the external electric field or exciton arose by the external photon source are reduced dramatically over the critical value of CNT concentration because CNT element provide various isolated residues in the composites of ZnS based phosphor rather than pathway or channel for the D-A(Donnor to Acceptor) pair transition or the radiative recombination of electron-hole.
목차
1. 서론
2. 실험
2-1. 스크린 프린팅 장치에 의한 박막 제작 조건
2-2. 스크린 프린팅을 이용한 발광 소자의 제작 과정
3. 결과 및 고찰
3-1. CNT-ZnS(Cu, Al)의 표면 상태(Morphology) 특성 조사
3-2 CNT-ZnS(Cu, Al) 박막의 광 여기 발광(PL: Photoluminescence) 특성
3-3. CNT-ZnS(Cu, Al) 박막의 전계 발광(EL: Electro-luminescence) 특성
3-4. ZnS(Cu, Al) 박막의 CNT 불순물에 의한 광학적 특성 비교
4. 결론
참고문헌