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Applications of Tris(4-(thiophen-2-yl)phenyl)amine- and Dithienylpyrrole-based Conjugated Copolymers in High-Contrast Electrochromic Devices

机译:三(4-(噻吩-2-基)苯基)胺和二噻吩基吡咯基共轭共聚物在高对比度电致变色器件中的应用

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摘要

Tris(4-(thiophen-2-yl)phenyl)amine- and dithienylpyrrole-based copolymers (P(TTPA-co-DIT) and P(TTPA-co-BDTA)) were electropolymerized on ITO electrode by applying constant potentials of 1.0, 1.1, and 1.2 V. Spectroelectrochemical investigations revealed that P(TTPA-co-DIT) film displayed more color changes than P(TTPA-co-BDTA) film. The P(TTPA-co-DIT) film is yellow in the neutral state, yellowish-green and green in the intermediate state, and blue (1.2 V) in highly oxidized state. The ∆Tmax of the P(TTPA-co-DIT) and P(TTPA-co-BDTA) films were measured as 60.3% at 1042 nm and 47.1% at 1096 nm, respectively, and the maximum coloration efficiency (η) of P(TTPA-co-DIT) and P(TTPA-co-BDTA) films were calculated to be 181.9 cm2·C1 at 1042 nm and 217.8 cm2·C1 at 1096 nm, respectively, in an ionic liquid solution. Dual type electrochromic devices (ECDs) consisting of P(TTPA-co-DIT) (or P(TTPA-co-BDTA)) anodic copolymer, ionic liquid-based electrolyte, and poly(3,4-(2,2-diethylpropylenedioxy)thiophene) (PProDOT-Et2) cathodic polymer were constructed. P(TTPA-co-BDTA)/PProDOT-Et2 ECD showed high ΔTmax (48.1%) and high coloration efficiency (649.4 cm2·C1) at 588 nm. Moreover, P(TTPA-co-DIT)/PProDOT-Et2 and P(TTPA-co-BDTA)/PProDOT-Et2 ECDs displayed satisfactory optical memory and long term switching stability.
机译:三(4-(噻吩-2-基)苯基)胺和二噻吩基吡咯基共聚物(P(TTPA-co-DIT)和P(TTPA-co-BDTA))通过施加1.0的恒定电势在ITO电极上电聚合,1.1和1.2V。光谱电化学研究表明,P(TTPA-co-DIT)膜比P(TTPA-co-BDTA)膜显示更多的颜色变化。 P(TTPA-co-DIT)膜在中性状态下为黄色,在中间状态下为黄绿色和绿色,在高度氧化状态下为蓝色(1.2 V)。 P(TTPA-co-DIT)和P(TTPA-co-BDTA)薄膜的∆Tmax分别在1042 nm和1096 nm处测量为60.3%和47.1%,并且P的最大着色效率(η) (TTPA-co-DIT)和P(TTPA-co-BDTA)薄膜的计算值为181.9 cm 2 ·C - 1 在离子液体溶液中,在1096​​ nm处分别为1042 nm和217.8 cm 2 ·C - 1 。由P(TTPA-co-DIT)(或P(TTPA-co-BDTA))阳极共聚物,离子液体基电解质和聚(3,4-(2,2-二乙基丙二氧基)组成的双色电致变色器件(ECD) )噻吩(PProDOT-Et2)阴极聚合物。 P(TTPA-co-BDTA)/ PProDOT-Et2 ECD显示出高ΔTmax(48.1%)和高着色效率(649.4 cm 2 ·C - 1 < / sup>)在588 nm。此外,P(TTPA-co-DIT)/ PProDOT-Et2和P(TTPA-co-BDTA)/ PProDOT-Et2 ECD显示出令人满意的光学存储和长期开关稳定性。

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