Chemical Physics, Lund University, Box 124, 22100 Lund, Sweden.
Small. 2013 Aug 12;9(15):2619-27. doi: 10.1002/smll.201203272. Epub 2013 Mar 6.
Conjugated polymers (CPs) are promising materials for fluorescence imaging application. However, a significant problem in this field is the unexplained abnormally low fluorescence brightness (or number of fluorescence photons detected per one excitation photon) exhibited by most of CP single chains in solid polymer hosts. Here it is shown that this detrimental effect can be fully avoided for short chains of polyfluorene-bis-vinylphenylene (PFBV) embedded in a host polymer matrix of PMMA, if the conjugated backbone is insulated by cyclodextrin rings to form a polyrotaxane (PFBV-Rtx). Fluorescence kinetics and quantum yields are measured for the polymers in liquid solutions, pristine films, and solid PMMA blends. The fluorescence brightness of PFBV-Rtx single chains dispersed in a solid PMMA is very close to that expected for a chain with 100% fluorescence quantum yield, while the unprotected PFBV chains of the same length possess 4 times lower brightness. Despite this, the fluorescence decay kinetics are the same for both polymers, suggesting the presence of static or ultrafast fluorescence quenching in the unprotected polymer. About 80% of an unprotected PFBV chain is estimated to be completely quenched. The hypothesis is that the cyclodextrin rings prevent the quenching by working as 'bumpers' reducing the mechanical forces applied by the host polymer to the conjugated backbone and help retaining its conformational freedom. While providing a recipe for making CP fluorescence bright at the single-molecule level, these results identify a lack of fundamental understanding in the community of the influence of the environment on excited states in conjugated materials.
共轭聚合物(CPs)是荧光成像应用的有前途的材料。然而,该领域的一个重大问题是,大多数 CP 单链在固体聚合物主体中表现出未解释的异常低的荧光亮度(或每一个激发光子检测到的荧光光子数)。本文表明,如果将聚芴-双乙烯基苯(PFBV)的短链嵌入 PMMA 主链聚合物中形成聚轮烷(PFBV-Rtx),则可以完全避免这种有害影响。在液体溶液、原始薄膜和固体 PMMA 共混物中测量了聚合物的荧光动力学和量子产率。分散在固体 PMMA 中的 PFBV-Rtx 单链的荧光亮度非常接近具有 100%荧光量子产率的链的预期亮度,而相同长度的未保护 PFBV 链的亮度低 4 倍。尽管如此,两种聚合物的荧光衰减动力学是相同的,这表明未受保护的聚合物中存在静态或超快荧光猝灭。据估计,大约 80%的未受保护的 PFBV 链完全猝灭。假设环糊精环可以防止猝灭,起到“缓冲器”的作用,从而减少主体聚合物对共轭主链施加的机械力,并有助于保持其构象自由度。虽然提供了在单分子水平上使 CP 荧光变亮的方法,但这些结果表明,在共轭材料中环境对激发态的影响方面,科学界缺乏基本的理解。