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Impact of 2,6-connectivity in azulene: optical properties and stimuli responsive behavior

机译:氮杂2,6-连接性的影响:光学性质和刺激响应行为

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The possible incorporation of the redox active, small donor acceptor molecule azulene as a core structure for potential optoelectronic applications has been evaluated. The synthesis and characterization of different isomers of di(phenylethynyl)azulene 1-4 have been successfully carried out. The photophysical properties as well as their stimuli responsive behavior reflecting their corresponding electronic properties were also investigated. The experimental observations show that 2,6-connection (3) exhibits intense luminescence and shows the strongest stimuli responsive behavior upon acid treatment. DFT calculations of 3 reveal the highest contributions of the alkyne substituents at the 2- and 6-position of the azulene to the ground- and excited state that makes the 2,6-connectivity at azulene a very promising candidate for low band-gap conjugated materials.
机译:已经评估了氧化还原活性,小的施主受体分子氮杂苯并氮作为潜在光电应用核心结构的可能性。已经成功地进行了二(苯基乙炔基)氮杂烯1-4的不同异构体的合成和表征。还研究了光物理性质以及反映它们相应的电子性质的刺激响应行为。实验观察表明,2,6-连接(3)表现出强烈的发光并且在酸处理后表现出最强的刺激响应行为。 DFT的3计算表明,在氮杂基的2和6位上的炔基取代基对基态和激发态的贡献最大,这使得在氮杂基上的2,6-连接性成为低带隙共轭的非常有希望的候选人材料。

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