Adusei Emmanuel B A, Casetti Vincent T, Goldsmith Calvin D, Caswell Madison, Alinj Drecila, Park Jimin, Zeller Matthias, Rusakov Alexander A, Kinney Zacharias J
Department of Chemistry, Oakland University Rochester Michigan USA
Department of Chemistry, Purdue University West Lafayette Indiana USA.
RSC Adv. 2024 Aug 12;14(35):25120-25129. doi: 10.1039/d4ra04850d.
Thiophene-containing heteroarenes are one of the most well-known classes of π-conjugated building blocks for photoactive molecules. Isomeric naphthodithiophenes (NDTs) are at the forefront of this research area due to their straightforward synthesis and derivatization. Notably, NDT geometries that are bent - such as naphtho[2,1-:3,4-']dithiophene (α-NDT) and naphtho[1,2-:4,3-']dithiophene (β-NDT) - are seldom employed as photoactive small molecules. This report investigates how remote substituents impact the photophysical properties of isomeric α- and β-NDTs. The orientation of the thiophene units plays a critical role in the emission: in the α(OHex)R series conjugation from the end-caps to the NDT core is apparent, while in the β(O-Pent)R series minimal change is observed unless strong electron acceptors, such as β(O-Pent)(PhCF), are employed. This push-pull acceptor-donor-acceptor (A-D-A) fluorophore exhibits positive fluorosolvatochromism that correlates with increasing solvent polarity parameter, (30). In total, these results highlight how remote substituents are able to modulate the emission of isomeric bent NDTs.
含噻吩的杂芳烃是用于光活性分子的最著名的π共轭结构单元类别之一。异构萘并二噻吩(NDTs)因其直接的合成和衍生化方法而处于该研究领域的前沿。值得注意的是,弯曲的NDT几何结构,如萘并[2,1-:3,4-']二噻吩(α-NDT)和萘并[1,2-:4,3-']二噻吩(β-NDT),很少被用作光活性小分子。本报告研究了远程取代基如何影响异构α-和β-NDT的光物理性质。噻吩单元的取向在发射中起着关键作用:在α(OHex)R系列中,从端基到NDT核心的共轭是明显的,而在β(O-Pent)R系列中,除非使用强电子受体,如β(O-Pent)(PhCF),否则观察到的变化很小。这种推-拉式受体-供体-受体(A-D-A)荧光团表现出正的氟溶剂化显色性,这与增加的溶剂极性参数(30)相关。总的来说,这些结果突出了远程取代基如何能够调节异构弯曲NDT的发射。