Aivali Stefania, Andrikopoulos Konstantinos C, Andreopoulou Aikaterini K
Department of Chemistry, University of Patras, University Campus, GR26504 Rio-Patras, Greece.
Département de Chimie, Université Laval, Quebec City, QC G1V 0A6, Canada.
Polymers (Basel). 2023 Jun 18;15(12):2721. doi: 10.3390/polym15122721.
A systematic study of the influence of the chemical substitution pattern of semiconducting polymers carrying side chain perylene diimide (PDI) groups is presented. Semiconducting polymers based on perflurophenyl quinoline (5FQ) were modified via a readily accessible nucleophilic substitution reaction. The perfluorophenyl group was studied as an electron-withdrawing reactive functionality on semiconducting polymers that can undergo fast nucleophilic aromatic substitution. A PDI molecule, functionalized with one phenol group on the bay area, was used for the substitution of the fluorine atom at the para position in 6-vinylphenyl-(2-perfluorophenyl)-4-phenyl quinoline. The final product was polymerized under free radical polymerization providing polymers of 5FQ incorporated with PDI side groups. Alternatively, the post-polymerization modification of the fluorine atoms at the para position of the 5FQ homopolymer with the PhOH-di-EH-PDI was also successfully tested. In this case, the PDI units were partially introduced to the perflurophenyl quinoline moieties of the homopolymer. The para-fluoro aromatic nucleophilic substitution reaction was confirmed and estimated via H and F NMR spectroscopies. The two different polymer architectures, namely, fully or partially modified with PDI units, were studied in terms of their optical and electrochemical properties, while their morphology was evaluated using TEM analysis, revealing polymers of tailor-made optoelectronic and morphological properties. This work provides a novel molecule-designing method for semiconducting materials of controlled properties.
本文对带有侧链苝二酰亚胺(PDI)基团的半导体聚合物的化学取代模式的影响进行了系统研究。基于全氟苯基喹啉(5FQ)的半导体聚合物通过易于进行的亲核取代反应进行改性。全氟苯基作为半导体聚合物上的吸电子反应性功能基团进行研究,该基团可发生快速亲核芳香取代反应。一种在湾区用一个酚基官能化的PDI分子,用于取代6-乙烯基苯基-(2-全氟苯基)-4-苯基喹啉中对位的氟原子。最终产物在自由基聚合条件下聚合,得到含有PDI侧基的5FQ聚合物。另外,用PhOH-di-EH-PDI对5FQ均聚物对位的氟原子进行后聚合改性也成功得到验证。在这种情况下,PDI单元被部分引入到均聚物的全氟苯基喹啉部分。通过氢谱和氟谱确认并评估了对位氟芳香亲核取代反应。研究了两种不同的聚合物结构,即完全或部分用PDI单元改性的结构,考察了它们的光学和电化学性质,同时用透射电子显微镜分析评估了它们的形态,揭示了具有定制光电子和形态性质的聚合物。这项工作为具有可控性质的半导体材料提供了一种新颖的分子设计方法。