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首页> 外文期刊>RSC Advances >Cucurbit[7]uril-threaded fluorene–thiophene-based conjugated polyrotaxanes
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Cucurbit[7]uril-threaded fluorene–thiophene-based conjugated polyrotaxanes

机译:葫芦[7] URIL螺纹芴 - 噻吩基缀合的聚横向

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摘要

Here we investigate the effect of cucurbit[7]uril (CB7) on the thermal and optical properties of fluorene–thiophene based conjugated polyelectrolytes. For this purpose, poly(9,9′-bis(6′′-( N , N , N -trimethylammonium)hexyl)fluorene- alt-co -thiophenelene) P1 and poly(9,9′-bis(6′′-( N , N , N -trimethylammonium)propyl)fluorene- alt-co -thiophenelene) P2 and their CB7-based polyrotaxane counterparts, P1CB7 and P2CB7 , are synthesized by threading the part of the conjugated backbone of these polymers with CB7 during their synthesis. Threading efficiency in the P1CB7 containing hexyl pendant of as high as 50% is achieved, but in the case of P2 , with the propyl pendant, only around 15% is achieved. We observed significant changes in the optical properties of both P1CB7 and P2CB7 with respect to their polymers P1 and P2 . Fluorescent quantum yields of P1 and P2 which are 0.11 and 0.35 have increased to 0.46 and 0.55 for P1CB7 (>4 fold) and P2CB7 , respectively. Moreover, polyrotaxanes compared to their polymers exhibit longer fluorescence lifetimes in the solution and the solid state thanks to the suppressed overall nonradiative recombination via encapsulation of the conjugated polymer backbone. Thermal analysis also indicates that polyrotaxanes have higher thermal stabilities than their polymer counterparts. In order to demonstrate the applicability of the synthesized materials, we also fabricated proof-of-concept light emitting diodes from P1 and its CB7-based polyrotaxane counterpart P1CB7 . The CB7-integrating polymer showed lower turn-on voltages with high electroluminescence colour purity due to balanced charge injection in P1CB7 as compared to the P1 polymer.
机译:在这里,我们研究了葫芦(CB7)对芴 - 噻吩基的共轭聚电解质的热和光学性质的影响。为此目的,聚(9,9'-双(6' - (6') - (n,n,n-甲基铵)己基)芴 - Alt-Co-噻吩烯)p1和聚(9,9'-Bis(6') - 通过将这些聚合物的缀合的主链的部分用CB7在其上穿过CB7,通过将这些聚合物的缀合的主链的一部分用CB7穿线,合成(N,N,N-噻吩铵)P2及其CB7的聚吡酰胺对应物P1CB7和P2CB7,通过CB7穿过其中的CB7合成。达到高达50%的己基侧链的P1CB7中的螺纹效率,但在P2的情况下,通过丙烯吊坠,达到约15%。我们观察到P1CB7和P2CB7的光学性质相对于它们的聚合物P1和P2的显着变化。 P1和P2的荧光量子产率为0.11和0.35增加到P1CB7(> 4倍)和P2CB7的0.46和0.55。此外,由于通过包装的共轭聚合物主链的包封,与它们的聚合物相比,与它们的聚合物相比具有较长的荧光寿命和固态的荧光寿命和固态。热分析还表明,多岩烷的热稳定性高于其聚合物对应物。为了证明合成材料的适用性,我们还制造了来自P1及其CB7的聚光甲烷对应P1CB7的概念概念发光二极管。与P1聚合物相比,CB7积分聚合物显示出具有高电致发光颜色纯度的低导电电压,与P1聚合物相比,P1CB7中的平衡电荷注射。

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