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Steric-Hindrance-Functionalized Polydiarylfluorenes: Conformational Behavior, Stabilized Blue Electroluminescence, and Efficient Amplified Spontaneous Emission.

Lubing BaiBin LiuYamin HanMengna YuJiong WangXinwen ZhangChangjin OuJinyi LinWensai ZhuLing-Hai XieChengrong YinJianfeng ZhaoJianpu WangDonal D C BradleyKaiwei Huang
Published in: ACS applied materials & interfaces (2017)
Control of the hierarchical molecular organization of polydiarylfluorenes by synthetic strategies is significant for optimizing photophysical properties as well as the performance of light-emitting devices. Herein, for the suppression of molecular aggregation and enhancement of luminescence efficiency, a series of steric units were introduced into polydiarylfluorenes by copolymerization, with the aim of integrating the advantages of the steric-hindrance effect and of the β-phase. Optical and Raman spectroscopies revealed a β-phase conformation for a polymer copolymerized with spiro[fluorene-9,9'-xanthene] (SFX), with photoluminescence (PL) peaks at 454, 482, and 517 nm. Moreover, the morphological stability and electroluminescence (EL) stability were also improved without compromising the performance of the polymer light-emitting diodes (PLEDs). Furthermore, three steric-hindrance-functionalized copolymers showed significantly decreased thresholds for amplified spontaneous emission (EthASE) and enhanced stability following thermal annealing treatment. These results indicate that steric-hindrance functionalization is a superior approach to improve the overall stability and optoelectronic properties for blue-light-emitting π-conjugated polymers.
Keyphrases
  • light emitting
  • quantum dots
  • single molecule
  • molecular dynamics simulations
  • high resolution
  • molecular dynamics
  • photodynamic therapy
  • single cell
  • mass spectrometry
  • high speed