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Push-pull bithiophene azo-chromophores bearing thiazole and benzothiazole acceptor moieties : synthesis and evaluation of their redox and nonlinear optical properties

机译:带有噻唑和苯并噻唑受体部分的推挽联噻吩偶氮发色团:氧化还原和非线性光学性质的合成和评估

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摘要

Three series of bithiophene azo dyes functionalized with thiazol-2-yl or benzothiazol-2-yl-diazene acceptor moieties were synthesized through azo coupling reaction using 2,2´-bithiophene, 5-alkoxy-2,2´-bithiophenes, 5-N,N-dialkylamino-2,2´-bithiophenes and thiazolyl and benzothiazolyl diazonium salts as coupling components. The 5-alkoxy-2,2´-bithiophene precursors yielded the 5-thiazolylazo-5´-alkoxy-2,2´-bithiophenes, while the azo coupling reaction of 5-N,N-dialkylamino-2,2´-bithiophenes with the thiazolyldiazonium salt gave 4-thiazolyl-azo-5-N,N-dialkylamino-2,2´-bithiophenes. A different reactivity behavior was observed for 2,2-bithiophene with thiazolyl diazonium salts which gave rise to the expected azo dyes together with several arylation products. The redox behavior, thermal stability, and the first hyperpolarizability of the novel chromophores were evaluated through cyclic voltammetry, thermogravimetric analysis (TGA) and hyper-Rayleight scattering (HRS) respectively. By varying the position of the thiazolyldiazene acceptor group on the bithiophene system, the electrochemical behavior as well as the optical (linear and nonlinear) properties of the donor-acceptor -conjugated systems can readily be tuned. Push-pull 5-thiazolylazo-5´-alkoxy-2,2´-bithiophenes exhibit the most promising redox and the solvatochromic properties and second order nonlinear optical response. The redox and the optical properties also show notable variations for the different heterocyclic spacers and were also sensitive to the electronic acceptor strength of the (benzo)thiazolyldiazene moieties.
机译:通过2,2′-联噻吩,5-烷氧基-2,2′-联噻吩,5-噻唑-2-基或苯并噻唑-2-基-二氮杂二烯基受体官能团官能化的三系列联噻吩偶氮染料N,N-二烷基氨基-2,2′-联噻吩和噻唑基和苯并噻唑基重氮盐作为偶联组分。 5-烷氧基-2,2′-联噻吩前体产生5-噻唑基-5-5-烷氧基-2,2′-联噻吩,而5-N,N-二烷基氨基-2,2′-联噻吩的偶氮偶联反应用噻唑基重氮盐得到4-噻唑基-偶氮-5-N,N-二烷基氨基-2,2′-联噻吩。对于2,2-联噻吩与噻唑基重氮盐观察到不同的反应行为,这产生了预期的偶氮染料以及几种芳基化产物。分别通过循环伏安法,热重分析(TGA)和超射线散射(HRS)评估了新型生色团的氧化还原行为,热稳定性和首次超极化性。通过改变噻唑基二氮杂受体在联噻吩系统上的位置,可以很容易地调节供体-受体共轭体系的电化学行为以及光学(线性和非线性)性质。推挽式5-噻唑基偶氮-5′-烷氧基-2,2′-联噻吩具有最有前途的氧化还原和溶剂变色性质,以及二阶非线性光学响应。氧化还原和光学性质对于不同的杂环间隔基也显示出显着的变化,并且对(苯并)噻唑基二氮杂基部分的电子受体强度也敏感。

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