基于N-2-氰乙基吡咯/3,4-乙烯二氧噻吩的电致变色共聚物的制备及性能
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南阳师范学院

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O631.1+1

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国家自然科学基金(21571109)、南阳师范学院自科培育基金(2023PY002, 2023PY003)和南阳师范学院SPCP项目(SPCP2024073)项目


Preparation and properties of conductive copolymer electrochromic materials based on cyanoethyl pyrrole and 3,4-ethylenedioxythiophene
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Nanyang Normal University

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    摘要:

    以N-2-氰乙基吡咯(CNPy)和3,4-乙烯二氧噻吩(EDOT)为原料,通过电化学氧化聚合法制备导电聚合物P(CNPy-co-EDOT)膜,采用FTIR、SEM、电化学工作站、UV-Vis等对P(CNPy-co-EDOT)膜的结构组成、微观形貌、电化学行为以及光学吸收性能等进行表征,利用光谱电化学方法,探究n(CNPy)∶n(EDOT)对制备的P(CNPy-co-EDOT)膜的电致变色转换和开路稳定性等性能的影响。结果表明,共聚单体EDOT的引入能够显著提高单体CNPy的电聚合成膜能力,形成具有电化学氧化还原活性和光学吸收特性的P(CNPy-co-EDOT)膜;P(CNPy-co-EDOT)膜具有较低的禁带宽度(1.70~2.32 eV)和利于电解质离子传输的多孔状颗粒堆积结构;n(CNPy)∶n(EDOT)=3∶7制备的P(CNPy3-co-EDOT7)膜具有显著的多色电致变色特性,在不同电压下,呈现出黄褐色(-0.8 V)、草绿色(0.4 V)到蓝色(1.0 V)的丰富颜色变化;P(CNPy3-co-EDOT7)膜的光学对比度为35.7%,响应时间为0.76 s,着色效率为219.6 cm2/C;P(CNPy3-co-EDOT7)膜在氧化态和还原态的透过率几乎没有变化,能维持原来的色泽,不会出现显著的褪色现象,显示出优异的光存储性能。

    Abstract:

    A conductive polymer film P(CNPy-co-EDOT) with high electrochemical activity was prepared by copolymerization of N-2-cyanoethylpyrrole (CNPy) and 3,4-ethylenedioxythiophene (EDOT). FT-IR spectrometer, SEM, electrochemical workstation and UV-Vis absorption spectrometer were used to characterize the molecular structure, microstructure, electrochemical and optical absorption properties of the polymer films. The electrochromic switching and open circuit stability of polymer films were evaluated by spectroelectrochemistry. The results showed that the introduction of the co-monomer EDOT could significantly enhance the electropolymerization capacity of the monomer CNPy, resulting in the formation of copolymer films with excellent electrochemical redox activity and optical absorption characteristics. These films exhibited a relatively low bandgap (1.70~2.32 eV) and a porous particle accumulation structure that facilitates electrolyte ion transport. Through optimizing the comonomer ratio to n(CNPy):n(EDOT)=3:7, the copolymer films had excellent multicolor electrochromic properties, showing good optical contrast (35.7%), fast response time (0.76 s), high coloring efficiency (219.6 cm2/C) and good open circuit memory performance in electrochromic properties. They also presented rich color variations from yellowish brown (?0.8 V), grass green (+0.4 V) to blue (+1.0 V), which hold potential application as electrochromic materials.

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李慧娴,孙肖梦,许天旭,邢小静,杜宪超,邱东方,程新峰.基于N-2-氰乙基吡咯/3,4-乙烯二氧噻吩的电致变色共聚物的制备及性能[J].精细化工,2024,41(12):

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  • 收稿日期:2024-09-30
  • 最后修改日期:2024-11-07
  • 录用日期:2024-11-05
  • 在线发布日期: 2024-12-10
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