Fine-tuning photophysical properties in pyrene derivatives: Unravelling the impact of substitution patterns with incorporation of a strong electron-donating group

IF 4.1 3区 工程技术 Q2 CHEMISTRY, APPLIED Dyes and Pigments Pub Date : 2024-06-17 DOI:10.1016/j.dyepig.2024.112285
Dawid Zych , Sylwia Zimosz , Martyna Kubis , Krzysztof Ejsmont , Aneta Slodek
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Abstract

To investigate the impact of substitution patterns on the photophysical properties of pyrene derivatives, six novel pyrene derivatives A1-A6 were synthesised by directly coupling anthracene with pyrene units. The objective was to explore the influence of strong electron-donating groups and substitution patterns on their photophysical behaviour. Experimental and theoretical studies were conducted to analyse the photophysical properties of these compounds, revealing a clear dependence on the position of substitution within the pyrene core. Analysis of molecular orbitals revealed significant contributions from both pyrene and anthracene moieties, with deviations from typical electronic distributions attributed to the presence of electron-donating groups. The energy gap values remained consistent across derivatives, contrary to previous findings involving acceptor motif substitutions. Structural analyses indicated deviations from planarity with significant changes in angles upon excitation. The emission spectra of mono- and disubstituted pyrene derivatives predominantly exhibited a single broad maximum with slight shoulders in each solvent. However, the emission spectra of the tetrasubstituted compound (A6) displayed a vibrational structure with three maxima in all solvents, reminiscent of pyrene itself but red-shifted by approximately 30 nm. Furthermore, the central maximum for compound A6 was around 20 nm blue-shifted compared to the other compounds, although its shoulder at around 440 nm corresponded to a maximum observed in other pyrene derivatives. Typically, 1,3,6,8-tetrasubstituted pyrene derivatives, compared to their disubstituted analogues, exhibited red-shifted emission maxima associated with increased π-conjugation due to additional units on the pyrene core. A comprehensive analysis was performed on the absorption and emission spectra of the pyrene derivatives in solvents of various polarities and in the solid state. The fluorescence intensity was influenced by solvent polarity, with A6 showing limited sensitivity (similar quantum efficiency of approximately 45 % in all solvents). Moreover, the quantum yield decreases with the increasing number of anthracene substituents, being the lowest for tetrasubstituted A6. Bi-exponential decay and shorter lifetimes were observed for A1-A6 compared to known compounds, with quantum yields decreasing as solvent polarity increased. In the solid state, emission peaks shifted towards longer wavelengths, with A1 exhibiting the highest quantum yield attributed to steric hindrance. At low temperatures (77 K), emission spectra displayed redshifts, and longer lifetimes were observed. Spectrometric tests in THF/water mixtures indicated luminescence quenching at higher water fractions.

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微调芘衍生物的光物理特性:通过掺入强电子捐赠基团揭示取代模式的影响
为了研究取代模式对芘衍生物光物理特性的影响,研究人员通过将蒽与芘单元直接偶联,合成了六种新型芘衍生物 A1-A6。目的是探索强电子捐赠基团和取代模式对其光物理行为的影响。通过实验和理论研究分析了这些化合物的光物理特性,发现它们与芘核内的取代位置有明显的关系。对分子轨道的分析表明,芘和蒽的分子轨道都有很大的贡献,典型电子分布的偏差归因于电子捐赠基团的存在。不同衍生物的能隙值保持一致,这与之前涉及受体基团置换的研究结果相反。结构分析表明,这些衍生物偏离了平面性,在激发时角度发生了显著变化。单取代和二取代芘衍生物的发射光谱在每种溶剂中主要表现出一个宽广的最大值,并伴有轻微的肩峰。然而,四代化合物(A6)的发射光谱显示出一种振动结构,在所有溶剂中都有三个最大值,与芘本身相似,但红移了约 30 纳米。此外,与其他化合物相比,化合物 A6 的中心最大值蓝移了约 20 纳米,尽管其在 440 纳米左右的肩部与在其他芘衍生物中观察到的最大值一致。通常情况下,与二取代类似物相比,1,3,6,8-四取代芘衍生物表现出红移发射最大值,这与芘核上的额外单元增加了π共轭有关。我们对芘衍生物在不同极性溶剂和固态下的吸收和发射光谱进行了全面分析。荧光强度受溶剂极性的影响,其中 A6 显示出有限的灵敏度(在所有溶剂中的量子效率相似,约为 45%)。此外,量子产率随着蒽取代基数目的增加而降低,四取代 A6 的量子产率最低。与已知化合物相比,A1-A6 的双指数衰减和寿命较短,量子产率随着溶剂极性的增加而降低。在固态下,发射峰转向更长的波长,其中 A1 的量子产率最高,这归因于立体阻碍。在低温(77 K)条件下,发射光谱会发生重移,寿命也会延长。在四氢呋喃/水混合物中进行的光谱测试表明,当水含量较高时,会出现发光淬灭现象。
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来源期刊
Dyes and Pigments
Dyes and Pigments 工程技术-材料科学:纺织
CiteScore
8.20
自引率
13.30%
发文量
933
审稿时长
33 days
期刊介绍: Dyes and Pigments covers the scientific and technical aspects of the chemistry and physics of dyes, pigments and their intermediates. Emphasis is placed on the properties of the colouring matters themselves rather than on their applications or the system in which they may be applied. Thus the journal accepts research and review papers on the synthesis of dyes, pigments and intermediates, their physical or chemical properties, e.g. spectroscopic, surface, solution or solid state characteristics, the physical aspects of their preparation, e.g. precipitation, nucleation and growth, crystal formation, liquid crystalline characteristics, their photochemical, ecological or biological properties and the relationship between colour and chemical constitution. However, papers are considered which deal with the more fundamental aspects of colourant application and of the interactions of colourants with substrates or media. The journal will interest a wide variety of workers in a range of disciplines whose work involves dyes, pigments and their intermediates, and provides a platform for investigators with common interests but diverse fields of activity such as cosmetics, reprographics, dye and pigment synthesis, medical research, polymers, etc.
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