摘要
将少量(摩尔分数为1%~3%)含噻吩的窄带隙单体和宽带隙硅芴单体进行共聚,合成了聚{9,9-二己基-3,6-硅芴-co-[2,5-二(2-甲基苯撑-4-基)-噻吩]}和聚{9,9-二己基-3,6-硅芴-co-[2,5-二(2-苯撑-4-基)-噻吩]}两类硅芴共聚物,通过紫外-可见吸收光谱、光致发光光谱,并制作聚合物发光二极管器件测试电致发光光谱等手段,系统表征了两类硅芴共聚物材料的性能.实验结果表明,噻吩的加入形成了新的蓝色发光中心,并且实现了从硅芴链段到含噻吩发光中心的有效能量转移.通过增加发光中心结构的空间位阻来减小其共轭程度,可以使聚合物的PL和EL光谱发生较大蓝移.最终得到了效率为0.46%和色坐标(CIE)为(0.19,0.16)的蓝光LED器件.
Two series of silafluorene based copolymers containing a small molar fraction( 1%-3% ) of thiophene derivatives moieties were synthesized with Yamamoto coupling reaction: poly {9,9-dihexyl-3,6-silafluorene-co- [ 2,5-di ( phenylene-4-yl ) -thiophene ] } (PSiF-DPT) and poly { 9,9-dihexyl-3,6-silafluorene-co- [ 2, 5-di-((2-methylphenylene)-4-yl)-thiophene] } (PSiF-DMPT). These copolymers were characterized v/a UVVis absorption spectra and photoluminescence spectra. Polymer light-emitting diodes (PLED) were fabricated to investigate these electroluminescent properties. It was found that the thiophene derivatives moieties became the efficient blue emitter via efficient energy transfer from the polysilafluorene segments. With the decrease of the coplanarity of thiophene derivatives or its feed ratio, the PL and EL spectra can be blue shifted. The color purity can be adjusted to CIE(0. 19,0. 16) with a EL quantum efficiency of 0. 46%.
出处
《高等学校化学学报》
SCIE
EI
CAS
CSCD
北大核心
2007年第8期1586-1592,共7页
Chemical Journal of Chinese Universities
基金
国家自然科学基金(批准号:90201031和20674021)
教育部科学技术研究重点项目(批准号:104208)资助
关键词
聚合物发光二极管
聚硅芴
噻吩
蓝光聚合物
电致发光
Polymer light-emitting diode
Polysilafluorene
Thiophene
Blue light-emitting polymer
Electroluminescence