Peterhans Lisa, Alloa Elisa, Sheima Yauhen, Vannay Laurent, Leclerc Mario, Corminboeuf Clémence, Hayes Sophia C, Banerji Natalie
Department of Chemistry, University of Fribourg, Chemin du Musée 9, CH-1700 Fribourg, Switzerland.
Phys Chem Chem Phys. 2017 Nov 1;19(42):28853-28866. doi: 10.1039/c7cp02734f.
We report here the photophysical properties of a water-soluble conjugated polythiophene with cationic side-chains. When dissolved in aqueous buffer solution (PBS, phosphate buffered saline), there is ordering of the polymer chains due to the presence of the salts, in contrast to pure water, where a random-coil conformation is adopted at room temperature. The ordering leads to a pronounced colour change of the solution (the absorption maximum shifts from 400 nm to 525 nm). Combining resonance Raman spectroscopy with density functional theory computations, we show a significant backbone planarization in the ordered phase. Moreover, the ratio of ordered phase to random-coil phase in PBS solution, as well as the extent of intermolecular interactions in the ordered phase, can be tuned by varying the temperature. Femtosecond transient absorption spectroscopy reveals that the excited-state behaviour of the polyelectrolyte is strongly affected by the degree of ordering. While triplet state formation is favoured in the random-coil chains, the ordered chains show a weak yield of polarons, related to interchain interactions. The investigated polyelectrolyte has been previously used as a biological DNA sensor, based on optical transduction when the conformation of the polyelectrolyte changes during assembly with the biomolecule. Therefore, our results, by correlating the photophysical properties of the polyelectrolyte to backbone and intermolecular conformation in a biologically relevant buffer, provide a significant step forward in understanding the mechanism of the biological sensing.
我们在此报告一种带有阳离子侧链的水溶性共轭聚噻吩的光物理性质。当溶解于水性缓冲溶液(PBS,磷酸盐缓冲盐水)中时,由于盐的存在,聚合物链会发生有序排列,这与纯水不同,在纯水中聚合物在室温下呈无规卷曲构象。这种有序排列导致溶液发生显著的颜色变化(吸收最大值从400 nm移至525 nm)。结合共振拉曼光谱和密度泛函理论计算,我们发现在有序相中主链有显著的平面化。此外,通过改变温度可以调节PBS溶液中有序相和无规卷曲相的比例,以及有序相中的分子间相互作用程度。飞秒瞬态吸收光谱表明,聚电解质的激发态行为受有序程度的强烈影响。虽然在无规卷曲链中三重态的形成更有利,但有序链中极化子的产率较低,这与链间相互作用有关。所研究的聚电解质此前已被用作生物DNA传感器,基于在与生物分子组装过程中聚电解质构象变化时的光学信号转换。因此,我们的结果通过将聚电解质的光物理性质与生物相关缓冲液中的主链和分子间构象相关联,在理解生物传感机制方面向前迈出了重要一步。