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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Synthesis and characterization of D-A type conjugated electrochromic polymers with cross-linked structure employing a novel and multifunctionalized molecular as the acceptor unit
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Synthesis and characterization of D-A type conjugated electrochromic polymers with cross-linked structure employing a novel and multifunctionalized molecular as the acceptor unit

机译:具有新的交联结构的D-A型共轭电致变色聚合物的合成与表征,其用新型和多功能分子作为受体单元

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In this study, three novel conjugated electrochromic copolymers including PIPE-1, PIPE-2 and PIPE-3 were successfully synthesized via Stille coupling reaction. In the synthetic process, a novel and multifunctionalized electron functional unit 5,8,14,17-tetrabromoquinoxaline [2',3':9,10]phenanthrene[4,5-abc]phenazine (M2) was selected as the acceptor unit, 6,8-dibromo-3,3-bis-decy1-3,4-dihydro-2H-thieno[3,4-11] [1,4]dioxepine (M1, brominated ProDOT-decyl(2)) and bis(trimethylstannane) functionalized indacenodithiophene (M3) as donor units. Cyclic voltammetry (CV), X-ray photoelectron spectroscopy (XPS), spectroelectrochemistry, kinetic switching and thermogravimetry (TG) were performed for the three polymers. The three polymers have band gaps at around 2.0 eV, and the absorption peaks and colors of the polymers can be changed to some extent by changing the feed ratios of the monomers. The three polymers exhibited good thermal stability. More importantly, the three polymers exhibited high optical contrast and fast response time both in the visible and nearinfrared regions. The optical contrast of PIPE-1, PIPE-2 and PIPE-3 in the near infrared region were 67.26%, 66.43% and 57.67%, respectively, and the response time of PIPE-2 at 1500 nm was only 0.35 s. PIPE-1 changed from wine red (0 V) to brown (0.90 V) and finally turned blue gray (1.40 V). PIPE-2 changed from rose red color (0 V) to light brown color at 0.90 V, and to light blue color (1.40 V). PIPE-3 changed from magenta (0 V) to light red color at 0.89 V, and to light gray color at 1.02 V, and finally became a blue color (1.40 V), which suggested that the polymer has multi-chromic property.
机译:在该研究中,通过STIZH偶联反应成功地合成了包括管1,管2和管3的三种新型共轭电致变色共聚物。在合成方法中,选择新颖和多官能化电子功能单元5,8,14,17-四溴喹喔啉[2',3':9,10]菲[4,5-ABC]苯氮杂物(M2)作为受体单元,6,8-二溴-3,3-双 - Defy1-3,4-二氢-2H-噻吩[3,4-11] [1,4]二恶英(M1,溴化产品 - 癸基(2))和BIS (三甲基烷烷)作为供体单元的官能化茚环二丁癸烯(M3)。对三种聚合物进行循环伏安法(CV),X射线光电子能谱(XPS),光谱电化学,动力学切换和热重率(TG)。三个聚合物在2.0eV左右具有带间隙,并且通过改变单体的进料比可以一定程度地改变聚合物的吸收峰和颜色。三种聚合物表现出良好的热稳定性。更重要的是,三种聚合物在可见和接近的区域中表现出高光学对比度和快速响应时间。近红外区域中的管1,管2和管3的光学对比度分别为67.26%,66.43%和57.67%,管 - 2在1500nm处的响应时间仅为0.35秒。管道1从葡萄酒红色(0 v)变成棕色(0.90 V),最后转动蓝灰色(1.40 v)。管道2从玫瑰红色(0V)变为0.90 V的浅棕色,浅蓝色(1.40 V)。管道3从品红色(0V)改变为0.89 V的红色红颜色,并在1.02 V时浅灰色,最后成为蓝色(1.40 V),这表明聚合物具有多铬特性。

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