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Design, synthesis and evaluation of redox, second order nonlinear optical properties and theoretical DFT studies of novel bithiophene azo dyes functionalized with thiadiazole acceptor groups

机译:噻二唑受体基官能化的新型联噻吩偶氮染料的氧化还原,二阶非线性光学性质和理论DFT设计,合成和评估

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摘要

Two series of novel thermally stable second-order nonlinear optical (NLO) heterocyclic azo dyes 4-5 have been designed and synthesized. The two series of compounds were based on different combinations of acceptor groups (thiadiazole or arylthiadiazole electron-deficient heterocycles) linked to bithiophene which acts at the same time as a donor group and as a pi-conjugated bridge. The solvatochromic behavior of azo dyes 4-5 was investigated in several solvents of different polarity, while their thermal stability was evaluated using thermogravimetric analysis. Optimized ground-state molecular geometries and an estimation of the lowest energy single electron vertical excitation energies in DMF solutions were obtained using density functional theory (DFT). Their redox properties were studied by cyclic voltammetry, while hyper-Rayleigh scattering (HRS) was employed to evaluate their second-order nonlinear optical properties. The measured molecular first hyperpolarizabilities and the observed electrochemical behavior showed variations for the different acceptor systems used (thiadiazole or arylthiadiazole) and were also sensitive to the electronic acceptor strength of the substituents (R) linked to thiadiazole or arylthiadiazole heterocycles. Donor-acceptor arylthiadiazole-bithienyl diazenes exhibit the most promising thermal (Td = 237-305 ºC) and solvatochromic (beta = 1117-2503 cm-1) properties and second order nonlinear optical response (136-226 x 10-30 esu).
机译:设计并合成了两类新颖的热稳定的二阶非线性光学(NLO)杂环偶氮染料4-5。这两个系列的化合物基于与联噻吩连接的受体基团(噻二唑或芳基噻二唑缺电子的杂环)的不同组合,后者同时充当供体基团和pi共轭桥。在几种不同极性的溶剂中研究了偶氮染料4-5的溶剂化行为,同时使用热重分析法评估了它们的热稳定性。使用密度泛函理论(DFT)获得了优化的基态分子几何结构以及DMF解决方案中最低能量的单电子垂直激发能的估计。通过循环伏安法研究了它们的氧化还原特性,同时采用超瑞利散射(HRS)评估了它们的二阶非线性光学特性。测得的分子第一超极化性和观察到的电化学行为表明所用不同受体系统(噻二唑或芳基噻二唑)的变化,并且对与噻二唑或芳基噻二唑杂环连接的取代基(R)的电子受体强度敏感。供体-受体芳基噻二唑-噻吩二氮烯具有最有前途的热性质(Td = 237-305ºC)和溶剂变色(beta = 1117-2503 cm-1)和二阶非线性光学响应(136-226 x 10-30 esu)。

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