Peterhans Lisa, Nicolaidou Eliana, Diamantis Polydefkis, Alloa Elisa, Leclerc Mario, Surin Mathieu, Clément Sébastien, Rothlisberger Ursula, Banerji Natalie, Hayes Sophia C
Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, CH-3012 Bern, Switzerland.
Department of Chemistry, University of Cyprus, P.O. Box 20537, 1678, Nicosia, Cyprus.
Chem Mater. 2020 Sep 8;32(17):7347-7362. doi: 10.1021/acs.chemmater.0c02251. Epub 2020 Aug 7.
A promising approach to influence and control the photophysical properties of conjugated polymers is directing their molecular conformation by templating. We explore here the templating effect of single-stranded DNA oligomers (ssDNAs) on cationic polythiophenes with the goal to uncover the intermolecular interactions that direct the polymer backbone conformation. We have comprehensively characterized the optical behavior and structure of the polythiophenes in conformationally distinct complexes depending on the sequence of nucleic bases and addressed the effect on the ultrafast excited-state relaxation. This, in combination with molecular dynamics simulations, allowed us a detailed atomistic-level understanding of the structure-property correlations. We find that electrostatic and other noncovalent interactions direct the assembly with the polymer, and we identify that optimal templating is achieved with (ideally 10-20) consecutive cytosine bases through numerous π-stacking interactions with the thiophene rings and side groups of the polymer, leading to a rigid assembly with ssDNA, with highly ordered chains and unique optical signatures. Our insights are an important step forward in an effective approach to structural templating and optoelectronic control of conjugated polymers and organic materials in general.
一种影响和控制共轭聚合物光物理性质的有前景的方法是通过模板作用来引导其分子构象。我们在此探索单链DNA寡聚物(ssDNA)对阳离子聚噻吩的模板效应,目的是揭示引导聚合物主链构象的分子间相互作用。我们全面表征了取决于核酸碱基序列的、处于构象不同的复合物中的聚噻吩的光学行为和结构,并探讨了其对超快激发态弛豫的影响。这与分子动力学模拟相结合,使我们能够在详细的原子水平上理解结构 - 性质的相关性。我们发现静电和其他非共价相互作用引导聚合物的组装,并且我们确定通过与聚合物的噻吩环和侧基进行大量的π - 堆积相互作用,(理想情况下为10 - 20个)连续的胞嘧啶碱基可实现最佳模板作用,从而导致与ssDNA形成刚性组装,具有高度有序的链和独特的光学特征。我们的见解是在共轭聚合物和一般有机材料的结构模板化和光电控制的有效方法方面向前迈出的重要一步。