Department of Chemistry, Faculty of Applied Sciences, Umm Al-Qura University, 21955 Makkah, Saudi Arabia; Department of Chemistry, Faculty of Science, Assiut University, 71516 Assiut, Egypt.
Department of Chemistry, Faculty of Applied Sciences, Umm Al-Qura University, 21955 Makkah, Saudi Arabia; Département de chimie, Faculté des Sciences de Monastir, Avenue de l'Environnement, 5019 Monastir, Tunisia.
Spectrochim Acta A Mol Biomol Spectrosc. 2021 Mar 5;248:119169. doi: 10.1016/j.saa.2020.119169. Epub 2020 Nov 12.
In the present work, twenty-four environmentally-sensitive cyanopyridine fluorophores bearing pyrene and/ or fluorene with different para-substituted-phenyl moieties that have been previously designed and synthesized by us are studied in depth for their photophysical properties. Initially, the optical performances of the compounds were investigated by employing UV-visible and fluorescence spectroscopic tools in various aprotic and protic solvents. All the compounds exhibited absorption bands between 310 and 452 nm, and emission bands between 454 and 633 nm. High sensitivity emission spectra with solvents of different polarities were recorded and studied. The fluorescence quantum yield (ϕ) increased in solvents of low polarity and decreased on increasing the polarity of solvents. On the other hand, in case of strong electron donating (-NMe) and strong electron attracting (-CN) substitution, a pronounced increase in Stokes shifts (up to 252 nm, 14250 cm) were recorded. Lippert-Mataga and Reichardts correlations, applied for estimating the variation in dipole moments (Δμ), suggested that the emissive state of designed fluorescence 3-cyanopyridine derivatives is of strong ICT character. The aprotic and protic solvents gave a linear plot for the Stokes shifts in a Lippert-Mataga plot, which appeared as two distinct domains in E(30) scales indicating the presence of hydrogen bondings. It was observed that for compounds 5b - 8b, with (-NMe) group on the skeleton of phenyl ring, the Lippert-Mataga and Reichardt-Dimroth's plots deviated from linearity signifying that 5b - 8b molecules were involved in specific interaction with protic solvents.
在本工作中,深入研究了我们之前设计和合成的二十四种带有芘和/或芴的环境敏感的氰基吡啶荧光团,它们带有不同的对位取代苯基部分,用于研究它们的光物理性质。最初,通过在各种非质子和质子溶剂中使用紫外-可见和荧光光谱工具研究了化合物的光学性能。所有化合物均在 310nm 至 452nm 之间显示出吸收带,在 454nm 至 633nm 之间显示出发射带。记录并研究了具有不同极性溶剂的高灵敏度发射光谱。荧光量子产率(φ)在低极性溶剂中增加,而在增加溶剂极性时降低。另一方面,对于强供电子(-NMe)和强吸电子(-CN)取代,记录到显著增加的斯托克斯位移(高达 252nm,14250cm)。应用于估计偶极矩(Δμ)变化的 Lippert-Mataga 和 Reichardts 相关关系表明,设计的荧光 3-氰基吡啶衍生物的发射态具有强烈的 ICT 特征。非质子和质子溶剂在 Lippert-Mataga 图中给出了斯托克斯位移的线性图,该图在 E(30)标度上呈现出两个明显的域,表明存在氢键。观察到对于化合物 5b-8b,在苯环骨架上带有(-NMe)基团,Lippert-Mataga 和 Reichardt-Dimroth 的图偏离了线性,表明 5b-8b 分子与质子溶剂发生了特定的相互作用。