首页> 外文期刊>Electrochimica Acta >A novel multichromic copolymer via electrochemical copolymerization of (S)-1,1'-binaphthyl-2,2'-diyl bis(N-(6-hexanoic acid-1-yl) pyrrole) and 3,4-ethylenedioxythiophene
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A novel multichromic copolymer via electrochemical copolymerization of (S)-1,1'-binaphthyl-2,2'-diyl bis(N-(6-hexanoic acid-1-yl) pyrrole) and 3,4-ethylenedioxythiophene

机译:通过(S)-1,1'-联萘基-2,2'-二基双(N-(6-己酸-1-基)吡咯)和3,4-亚乙基二氧噻吩的电化学共聚的新型多色共聚物

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摘要

Copolymer based on (S)-1,1'-binaphthyl-2,2'-diyl bis(N-(6-hexanoic acid-1-yl) pyrrole) (BPL) and 3,4-ethylenedioxythiophene (EDOT) is electrochemically synthesized and characterized. The comonomers exhibit relatively closer onset oxidation potentials, implying that the electrochemical copolymerization is relatively easy to be achieved. Electrochemical methods, FTIR, ~1H NMR and UV-vis analysis confirm that the resulting polymer is a copolymer rather than a blend or a composite of the respective homopolymers. Spectroelectrochemical analysis reveals that the copolymer film has distinct electrochromic properties from that of the BPL homopolymer film and shows six different colors under various potentials. At the neutral state of the copolymer, the π→π~* transition absorption peak is located at 535 nm and E_g is calculated as 1.78 eV. The copolymer film shows a maximum optical contrast (ΔT%) of 31% and a switching time of 1.2 s which are higher and faster than those of the homopolymer of BPL (PBPL, 7.8% and 2 s). The new multichromic copolymer is thermally stable up to 345℃ and is electrochemically stable up to 1.39 V. SEM images illustrate that the copolymer film presents a much smoother surface than that of the respective homopolymers.
机译:基于(S)-1,1'-联萘-2,2'-二基双(N-(6-己酸-1-基)吡咯)(BPL)和3,4-乙撑二氧噻吩(EDOT)的共聚物综合和表征。共聚单体表现出相对更近的起始氧化电势,这意味着电化学共聚相对容易实现。电化学方法,FTIR,〜1H NMR和UV-vis分析证实,所得聚合物是共聚物,而不是各个均聚物的共混物或复合物。光谱电化学分析表明,该共聚物膜具有与BPL均聚物膜不同的电致变色性能,并在各种电势下显示出六种不同的颜色。在共聚物的中性状态下,π→π*跃迁吸收峰位于535 nm,E_g计算为1.78 eV。共聚物薄膜的最大光学对比度(ΔT%)为31%,切换时间为1.2 s,这比BPL均聚物(PBPL,7.8%和2 s)更高和更快。新型多色共聚物在高达345℃的温度下具有热稳定性,在高达1.39 V的电压下具有电化学稳定性。SEM图像表明,该共聚物膜的表面比各自的均聚物要光滑得多。

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