发光学报
髮光學報
발광학보
CHINESE JOURNAL OF LUMINESCENCE
2007年
2期
173-178
,共6页
闫玲玲%李宏建%张剑华%朱儒晖%欧阳俊
閆玲玲%李宏建%張劍華%硃儒暉%歐暘俊
염령령%리굉건%장검화%주유휘%구양준
微腔有机发光器件%分布布喇格反射镜%电致发光(EL)
微腔有機髮光器件%分佈佈喇格反射鏡%電緻髮光(EL)
미강유궤발광기건%분포포나격반사경%전치발광(EL)
microcavity organic light-emitting device%distributed Bragg reflector%electroluminescence(EL)
设计了结构为Glass/DBR/ITO/TPD/Alq3/Ag的微腔有机发光器件.从理论上详细地研究了腔内各层结构对器件电致发光谱性能的影响.结果表明:随着腔长厚度的增加,器件的归一化电致发光谱强度不断减小;在可见光区,器件的EL谱随发光层厚度的增加出现振荡变化.空穴传输层和发光层的界面位置对器件电致发光谱的影响也很大.最后得到,在设计微腔时发光层厚度要尽量窄,并且中心发光区域应位于谐振腔中电场的峰值位置.
設計瞭結構為Glass/DBR/ITO/TPD/Alq3/Ag的微腔有機髮光器件.從理論上詳細地研究瞭腔內各層結構對器件電緻髮光譜性能的影響.結果錶明:隨著腔長厚度的增加,器件的歸一化電緻髮光譜彊度不斷減小;在可見光區,器件的EL譜隨髮光層厚度的增加齣現振盪變化.空穴傳輸層和髮光層的界麵位置對器件電緻髮光譜的影響也很大.最後得到,在設計微腔時髮光層厚度要儘量窄,併且中心髮光區域應位于諧振腔中電場的峰值位置.
설계료결구위Glass/DBR/ITO/TPD/Alq3/Ag적미강유궤발광기건.종이론상상세지연구료강내각층결구대기건전치발광보성능적영향.결과표명:수착강장후도적증가,기건적귀일화전치발광보강도불단감소;재가견광구,기건적EL보수발광층후도적증가출현진탕변화.공혈전수층화발광층적계면위치대기건전치발광보적영향야흔대.최후득도,재설계미강시발광층후도요진량착,병차중심발광구역응위우해진강중전장적봉치위치.
Microcavity structure consisting of distributed Bragg reflector and metal silver mirror is designed. The structure is glass/DBR/ITO/TPD/Alq3/Ag. The tris(8-hydroxyquinoline) aluminum( Alq3 ) is the electron transport layer and the emissive layer, and the N,N'-diphenyl-N,N'-bis(3-methyl-phenyl)-1,1 'biphenyl- 4,4'diamine(TPD)is the hole-transport layer. Compared to the electroluminescence(EL) spectra of non-cavity OLEDs, the linewidth of the MOLEDs is narrower, and the emission peak is enhanced. So the microcavity effect is very observable. In this work, the matrix method was adopted. The dependence of the electroluminescence(EL) spectra on the cavity length,the emitting layer thickness, the position of the interface between EML and HTL and the position of the emission region was analysed detailedly. In all calculation, the thickness and refraction of ITO and the thickness of the metalsilver were kept constant. The results show: 1. with increasing the thickness of cavity, the normalized electroluminescence (EL) intensity decreased continually; 2. with increasing the thickness of the emitting layer, the normalized EL intensity discontinuously changed; 3. because the electron mobility in Alq3 is different from the hole mobility in TPD,the emitted radiation was strongly dependent on the position of the emissive layer inside the cavity. Finally, the emission region should be narrow at the center of the electric field in the resonant cavity to optimize MOLED.