首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Electrochromic and electrochemical properties of 3-pyridinyl and 1,10-phenanthroline bearing poly(2,5-di(2-thienyl)-1H-pyrrole) derivatives
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Electrochromic and electrochemical properties of 3-pyridinyl and 1,10-phenanthroline bearing poly(2,5-di(2-thienyl)-1H-pyrrole) derivatives

机译:含3-吡啶基和1,10-菲咯啉的聚(2,5-二(2-噻吩基)-1H-吡咯)衍生物的电致变色和电化学性质

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摘要

This study examined a highly efficient synthetic route and characterization of two derivatives of 2,5-di(2-thienyl)-1H-pyrrole that incorporated 3-pyridinyl and 1,10-phenanthroline moieties in the central pyrrole ring. The electrically conductive polyPTPy and polyPhenTPy films were synthesized through electropolymerization on a glassy carbon electrode in a 0.1 M TBAP/dichloromethane solution. The polymer films were characterized using cyclic voltammetry (CV), in situ conductivity measurements, and in situ spectroelectrochemistry. The redox peaks of the polyPTPy and polyPhenTPy films were observed at 0.96/0.66 and 0.89/0.73 V. respectively. The maximum conductivities of polyFTPy and polyPhenTPy were 6.5 x 10(-2) and 9.2 x 10(-2) S/cm at 1.4 V. The spectroelectrochemical analysis showed that the polyPTPy film was brownish-yellow color (lambda(max)=430 nm) in the neutral state and dark blue (1.4 V) in the fully oxidized state. Similarly, polyPhenTPy was greenish-yellow color (lambda(max)=451 nm) in the neutral state and light blue (1.4 V) in the fully oxidized state. The polymer films exhibited a fast optical switching time within 1.0 s. The electrochemical and spectroelectrochemical characterizations of these films revealed that the materials were highly electroactive and robust in terms of electrochromics.
机译:这项研究审查了高效的合成路线和表征的2,5-二(2-噻吩基)-1H-吡咯的两个衍生物,该衍生物在中央吡咯环中结合了3-吡啶基和1,10-菲咯啉部分。通过在0.1 M TBAP /二氯甲烷溶液中的玻璃碳电极上进行电聚合,合成了导电的polyPTPy和polyPhenTPy薄膜。使用循环伏安法(CV),原位电导率测量和原位光谱电化学对聚合物薄膜进行表征。分别在0.96 / 0.66和0.89 / 0.73 V处观察到polyPTPy和polyPhenTPy膜的氧化还原峰。在1.4 V电压下,polyFTPy和polyPhenTPy的最大电导率分别为6.5 x 10(-2)和9.2 x 10(-2)S / cm。光谱电化学分析表明polyPTPy膜呈棕黄色(lambda(max)= 430) )(中性状态)和深蓝色(1.4 V)处于完全氧化状态。同样,polyPhenTPy在中性状态下为绿黄色(lambda(max)= 451 nm),在完全氧化状态下为浅蓝色(1.4 V)。聚合物薄膜在1.0 s内显示出快速的光学转换时间。这些薄膜的电化学和光谱电化学特性表明,该材料具有很高的电活性,并且在电致变色方面很坚固。

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