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Synthesis and spectroelectrochemical characterization of multi-colored novel poly(3,6-dithienylcarbazole) derivatives containing azobenzene and coumarin chromophore units

机译:含偶氮苯和香豆素生色团的多色新型聚(3,6-二噻吩基咔唑)衍生物的合成及光谱电化学表征

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摘要

Azobenzene and coumarin units bearing four novel 3,6-linked thiophene-carbazole-thiophene type electroactive monomers were synthesized in order to observe the effects of strong chromophore units on the electrochemical and spectroelectrochemical behaviors of resulting pi-conjugated conducting polymers (PTCbzAz, PECbzAz, PTCbzCo and PECbzCo). Electronic and optoelectronic properties of all polymers were investigated by cyclic voltammetry and in situ spectroelectrochemical studies, and their oxidation potentials, HOMO/LUMO energy levels, band gaps (E-g(op)), optical contrasts (Delta T%) and switching times were reported in detail. It was observed that incorporation of strong chromophore units in polymer backbones resulted in poly(3,6-dithienylcarbazole) derivatives with different optical band gap values and different number of colored states. The optical band gap values for PECbzAz, PECbzCo, PTCbzAz, PTCbzCo and were calculated as 1.71 eV, 1.75 eV, 1.93 eV and 2.07 eV, respectively, from the onset of pi-pi* transition in polymer films' neutral state absorptions. All polymers exhibited multicolored electrochromic behavior upon extarnally applied potential. Reported electrochemical and optical features of PECbzAz, PECbzCo, PTCbzAz, PTCbzCo suggest that these poly(3,6-dithienylcarbazole) derivatives are promising candidates for multicolored electrochromic device applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:合成了带有四个3,6-联噻吩-咔唑-噻吩型新型电活性单体的偶氮苯和香豆素单元,以观察强发色团对所得π共轭导电聚合物(PTCbzAz,PECbzAz, PTCbzCo和PECbzCo)。通过循环伏安法和原位光谱电化学研究研究了所有聚合物的电子和光电性能,并报告了它们的氧化电位,HOMO / LUMO能级,带隙(Eg(op)),光学对比度(ΔT%)和切换时间详细。观察到在聚合物主链中掺入强生色团单元导致具有不同光学带隙值和不同色态数的聚(3,6-二噻吩基咔唑)衍生物。从聚合物膜中性态吸收中的pi-pi *跃迁开始,PECbzAz,PECbzCo,PTCbzAz,PTCbzCo的光学带隙值分别计算为1.71 eV,1.75 eV,1.93 eV和2.07 eV。在外部施加电势时,所有聚合物均表现出多色电致变色行为。报道的PECbzAz,PECbzCo,PTCbzAz,PTCbzCo的电化学和光学特性表明,这些聚(3,6-二噻吩基咔唑)衍生物是有色电致变色器件应用的有希望的候选者。 (C)2016 Elsevier Ltd.保留所有权利。

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