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High-performance electrochromic devices based poly[Ni(salen)]-type polymer films

机译:高性能电致变色器件基聚[Ni(salen)]型聚合物薄膜

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摘要

We report the application of two poly[Ni(salen)]-type electroactive polymer films as new electrochromic materials. The two films, poly[Ni(3-Mesalen)] (poly[1]) and poly[Ni(3-MesaltMe)] (poly[2]), were successfully electrodeposited onto ITO/PET flexible substrates, and their voltammetric characterization revealed that poly[1] showed similar redox profiles in LiClO4/CH3CN and LiClO4/propylene carbonate (PC), while poly[2] showed solvent-dependent electrochemical responses. Both films showed multielectrochromic behavior, exhibiting yellow, green, and russet colors according to their oxidation state, and promising electrochromic properties with high electrochemical stability in LiClO4/PC supporting electrolyte. In particular, poly[1] exhibited a very good electrochemical stability, changing color between yellow and green (λ = 750 nm) during 9000 redox cycles, with a charge loss of 34.3%, an optical contrast of ΔT = 26.2%, and an optical density of ΔOD = 0.49, with a coloration efficiency of η = 75.55 cm2 C–1. On the other hand, poly[2] showed good optical contrast for the color change from green to russet (ΔT = 58.5%), although with moderate electrochemical stability. Finally, poly[1] was used to fabricate a solid-state electrochromic device using lateral configuration with two figures of merit: a simple shape (typology 1) and a butterfly shape (typology 2); typology 1 showed the best performance with optical contrast ΔT = 88.7% (at λ = 750 nm), coloration efficiency η = 130.4 cm2 C–1, and charge loss of 37.0% upon 3000 redox cycles.
机译:我们报道了两种聚[Ni(salen)]型电活性聚合物薄膜作为新型电致变色材料的应用。聚[Ni(3-Mesalen)](poly [1])和聚[Ni(3-MesaltMe)](poly [2])这两种薄膜已成功地电沉积到ITO / PET柔性基板上,并进行了伏安特性分析结果表明,poly [1]在LiClO4 / CH3CN和LiClO4 /碳酸亚丙酯(PC)中显示出相似的氧化还原曲线,而poly [2]显示出溶剂依赖性的电化学响应。两种膜均表现出多电致变色行为,根据其氧化态表现出黄色,绿色和赤褐色,并且在LiClO4 / PC支撑电解质中具有良好的电化学稳定性,并具有良好的电致变色性能。尤其是,poly [1]表现出非常好的电化学稳定性,在9000个氧化还原循环中黄色和绿色(λ= 750 nm)之间改变颜色,电荷损耗为34.3%,光学对比度为ΔT= 26.2%,并且光学密度ΔOD= 0.49,着色效率η= 75.55 cm2 C-1。另一方面,尽管poly [2]具有适度的电化学稳定性,但对于从绿色到褐色的变色表现出良好的光学对比度(ΔT= 58.5%)。最后,poly [1]用于制造具有横向性能的固态电致变色器件,该器件具有两个优点:简单形状(类型1)和蝴蝶形状(类型2);简单形状(类型1)和蝴蝶形状(类型2)。类型1显示最佳性能,其光学对比度ΔT= 88.7%(在λ= 750 nm时),着色效率η= 130.4 cm2 C-1和3000次氧化还原循环时电荷损耗为37.0%。

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