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Structural and photophysical studies of triphenylamine-based nonlinear optical dyes: effects of π-linker moieties on the D-π-A structure

机译:基于三苯胺的非线性光学染料的结构和光物理研究:π键口部分对D-π-A结构的影响

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摘要

In this work, a series of eight metal-free organic dyes based on triphenylamine as a donor and cyanoacetic acid as an acceptor of electrons with the donor-π-acceptor structure were studied by DFT and TD-DFT methods. Their electronic properties, absorption spectra, and molecular nonlinear optical (NLO) responses have been analyzed and reported. The influence of the change of π-conjugated linker on the electrochemical and photophysical properties of these metal-free organic dyes has been investigated and discussed in detail. The energy gap decreases by going from L1 to L8, which causes a large NLO response for the studied dyes. The natural bond orbital (NBO) analysis reveals that the separation of charge occurred upon photoexcitation and the electrons moved from the donor to the acceptor moiety. A high NLO response reveals that this kind of metal-free organic dyes has eye-catching and remarkably large first hyperpolarizabilityβtotvalues, especially for L7((E)-2-cyano-3-(3-((E)-2-(3-((E)-4-(diphenylamino)styryl)benzo[c]thiophen-1-yl)vinyl)benzo [c]thiophen-1-yl)acrylic acid)and L8((E)-2-cyano-3-(7-((E)-2-(7-((E)-4-(diphenylamino)styryl)thieno[3,4-b]pyrazin-5-yl)vinyl)thieno[3,4-b]pyrazin-5-yl)acrylic acid)with 150423.50 (a.u) and 202773.63 (a.u), respectively. Our research has been carried out to extend the conjugation of organic materials by controlling their π-conjugated linker to design new appealing NLO compounds. This study shows that these dyes are promising and have special properties for modern hi-tech applications such as solar cells, transistors, and organic light-emitting diodes (OLEDs), and even these properties can be adjusted and enhanced by the incorporation of the benzothiophene or thienopyrazine derivatives as a bridge so as to improve from L7 to L8.
机译:在这项工作中,通过DFT和TD-DFT方法研究了一种基于三苯胺作为供体和氰基乙酸作为供体和氰基乙酸的八种无金属染料。已经分析并报道了它们的电子性质,吸收光谱和分子非线性光学(NLO)反应。研究并详细讨论了π-共轭接头变化对这些无金属有机染料的电化学和光学性质的影响。通过从L1到L8开始,能量差距降低,这导致研究的染料的大NLO响应。天然键(NBO)分析显示,光透镜和从供体移动到受体部分时的电荷分离。高NLO的反应显示,这种无金属有机染料具有引人注目的,并且具有显着的大型高分子化βToTValues,特别是对于L7((e)-2-氰基-3-(3 - ((E)-2-(3) - ((e)-4-(二苯基氨基)styryl)苯并[c]噻吩-1-基)乙烯基)苯并[C]噻吩-1-基)丙烯酸)和L8((e)-2-氰基-3 - (7 - ((e)-2-(7 - (((e)-4-(二苯基氨基)styryl)Thieno [3,4-b]吡嗪-5-基)乙烯基)噻吩[3,4-b]吡嗪-5-基)分别具有150423.50(Au)和202773.63(Au)的丙烯酸)。我们的研究已经进行,通过控制其π缀合的接头来设计新的吸引力的NLO化合物来扩展有机材料的共轭。本研究表明,这些染料是有前途的,具有特殊的现代高科技应用的特性,如太阳能电池,晶体管和有机发光二极管(OLED),甚至可以通过掺入苯并噻吩来调节和增强这些性质或噻吩吡嗪衍生物作为桥梁,以便从L7到L8改善。

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