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首页> 外文期刊>Ecological restoration >Copolymerization of Azobenzene-bearing Monomer and 3,4-Ethylenedioxythiophene (EDOT): Improved Electrochemical Performance for Electrochromic Device Applications
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Copolymerization of Azobenzene-bearing Monomer and 3,4-Ethylenedioxythiophene (EDOT): Improved Electrochemical Performance for Electrochromic Device Applications

机译:亚非苯并二苯并二苯并噻吩(Edot)的共聚:改善电致变色装置应用的电化学性能

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摘要

In this study, novel electrochromic copolymers of 3,4-ethylenedioxythiophene (EDOT) and (E)-1,2-bis(2-fluoro-4-(4-hexylthiophen-2-yl)phenyl)diazene (M1) with different monomer feed ratios were designed and synthesized electrochemically. Electrochemical and spectroelectrochemical characterizations were performed using voltammetry and UV-Vis-NIR spectrophotometry techniques to test the applicability of copolymers for electrochromic applications. In terms of electrochemical behaviors, addition of an electron-rich EDOT unit into the azobenzene-containing copolymer increased the electron density on the polymer chain and afforded copolymers with very low oxidation potentials at around 0.30 V. While the homopolymers (P1 and PEDOT) exhibited neutral state absorptions centered at 510 and 583 nm, EDOT-bearing copolymers showed red shifted absorptions compared to those of P1 with narrower optical band gaps. In addition, the poor optical contrast and switching times of azobenzene-bearing homopolymer were significantly improved with EDOT addition into the copolymer chain. As a result of the promising electrochromic and kinetic preperties, CoP1.5-bearing single layer electrochromic device that works between purple and light greenish blue colors was constructed and characterized.
机译:在该研究中,具有不同的3,4-亚乙二氧基噻吩(Edot)和(E)-1,2-双(2-氟-4-(4-己二酮-2-基)苯基)重氮(M1)的新型电致变色共聚物电化学设计和合成单体饲料比。使用伏安法和UV-Vis-Nir分光光度法进行电化学和光谱电化学特性,以测试用于电致变色应用的共聚物的适用性。就电化学行为而言,向含偶氮苯的共聚物中加入富含电子的原料单元增加了聚合物链上的电子密度,并提供了在约0.30V的约0.30V的非常低的氧化电位的共聚物。而均聚物(P1和PEDOT)表现出与510和583nm以510和583nm为中心的中性状态吸收显示,与具有较窄光带间隙的P1相比,轴承共聚物的轴承共聚物显示出红移吸收。另外,含氮杂苯均聚物的差的光学对比度和切换时间与编码加入共聚物链中显着改善。由于电致变色和动力学高效,构建和特征在于紫色和浅绿色的蓝色配合的COP1.5轴承单层电致变色装置。

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