Controllable synthesis of multicolor Alq3:DCM single-crystalline microrods for optical waveguides

  • Lin, Hao-Feng
  • Yang, Xiao-Xu
  • Chen, Song
  • Kang, Ya-Ru
  • Wang, Jue
  • ... Yang, Woochul
  • 외 5명
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초록

It has been demonstrated that organic semiconductor micro-/nanocrystals with multicolor emission/waveguide characterizations would be widely utilized as ideal building blocks for the next generation of miniaturized optical, electronic and logic operation devices. However, rational synthesis of one dimensional micro-/nanocrystals with multicolor emission and optical waveguide performances are highly desirable and still remain a challenge. Here, the DCM doped Alq(3) single-crystalline microrods are fabricated via a facile solution-exchange method. It is found that a redshift in light-emission frequency is extremely sensitive to the doping concentration of 4-(dicyanomethylene)-2-methyl-6-(4-dimethylamino-styryl)-4Hpyran (DCM) guest molecule. The green emission at 527 nm of Alq(3) is the main emitting peak when doping concentration of DCM in Alq(3):DCM is less than 150:1. Then, when the doping concentration of DCM in Alq(3):DCM is larger than 100:2 such as 100:10, the red emission at 635 nm becomes the dominant emitting peak, the redshift amounts can reach to roughly 108 nm. In addition, the DCMdoped Alq(3) microrods exhibit a lower optical loss of 0.019 dB/pm as a multicolored waveguide material. Therefore, it is demonstrated that the DCM-doped organic micro/nano crystals can be utilized as a promising building block for various optoelectronic components.

키워드

Organic semiconductor moleculesSelf-assemblyMicro/nanowiresOptical waveguideForster resonance energy transferEMISSION
제목
Controllable synthesis of multicolor Alq3:DCM single-crystalline microrods for optical waveguides
저자
Lin, Hao-FengYang, Xiao-XuChen, SongKang, Ya-RuWang, JueJiang, Zhen-YuYang, WoochulHuang, ShulaiXi, YanWang, Xue-DongXie, Wan-Feng
DOI
10.1016/j.orgel.2022.106431
발행일
2022-03
유형
Article
저널명
Organic Electronics: physics, materials, applications
102
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1 ~ 6