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双(三联吡啶)低聚噻吩及其与锌(II)离子偶联剂的金属超分子聚合物的时间分辨瞬态光吸收研究

Time-Resolved Transient Optical Absorption Study of Bis(terpyridyl)oligothiophenes and Their Metallo-Supramolecular Polymers with Zn(II) Ion Couplers.

作者信息

Rais David, Menšík Miroslav, Štenclová-Bláhová Pavla, Svoboda Jan, Vohlídal Jiří, Pfleger Jiří

机构信息

†Institute of Macromolecular Chemistry, Academy of Sciences of the Czech Republic, v.v.i., Heyrovského nám. 2, 162 06 Prague 6, Czech Republic.

‡Faculty of Science, Department of Physical and Macromolecular Chemistry, Charles University in Prague, Hlavova 2030, 128 40 Prague 2, Czech Republic.

出版信息

J Phys Chem A. 2015 Jun 18;119(24):6203-14. doi: 10.1021/jp512213s. Epub 2015 Jun 5.

Abstract

α,ω-Bis(terpyridyl)oligothiophenes spontaneously assemble with Zn(II) ions giving conjugated constitutional dynamic polymers (dynamers) of the metallo-supramolecular class, which potentially might be utilized in optoelectronics. Their photophysical properties, which are of great importance in this field of application, are strongly influenced by the dynamic morphology. It was assessed in this study by using ultrafast pump-probe optical absorption spectroscopy. We identified and characterized relaxation processes running in photoexcited molecules of these oligomers and dynamers and show impacts of disturbed coplanarity of adjacent rings (twisting the thiophene-thiophene and thiophene-terpyridyl bonds by attached hexyl side groups) and Zn(II) ion couplers on these processes. Major effects are seen in the time constants of rotational relaxation, intersystem crossing, and de-excitation lifetimes. The photoexcited states formed on different repeating units within the same dynamer chain do not interact with each other even at very high excitation density. The method is presented that allows determining the equilibrium fraction of unbound oligothiophene species in a dynamer solution, from which otherwise hardly accessible values of the average degree of polymerization of constitutionally dynamic chains in solution can be estimated.

摘要

α,ω-双(三联吡啶)低聚噻吩与锌(II)离子自发组装,形成金属超分子类的共轭组成动态聚合物(动态聚合物),其在光电子学中可能具有潜在应用。它们的光物理性质在该应用领域中非常重要,受到动态形态的强烈影响。本研究通过超快泵浦-探测光吸收光谱对其进行了评估。我们识别并表征了这些低聚物和动态聚合物的光激发分子中发生的弛豫过程,并展示了相邻环共面性受扰(通过连接的己基侧基扭曲噻吩-噻吩键和噻吩-三联吡啶键)以及锌(II)离子偶联剂对这些过程的影响。主要影响体现在旋转弛豫、系间窜越和去激发寿命的时间常数上。即使在非常高的激发密度下,同一动态聚合物链内不同重复单元上形成的光激发态也不会相互作用。本文提出了一种方法,可用于确定动态聚合物溶液中未结合的低聚噻吩物种的平衡分数,据此可以估算溶液中组成动态链的平均聚合度,而这些值在其他情况下很难获得。

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