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Multicolored near-infrared electrochromic polyimides: Synthesis, electrochemical, and electrochromic properties

机译:彩色近红外电致变色聚酰亚胺:合成,电化学和电致变色性能

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A novel series of multicolored near-infrared electrochromic aromatic polyimides have been synthesized by a conventional two-step polymerization process. All polymers displayed outstanding thermal stability, i.e. 20 wt% loss in excess of 593 °C in nitrogen and high char yields (higher than 68% at 750 °C). In addition, the polymer films showed reversible electrochemical oxidation, high coloration efficiency, low switching time, and anodic green electrochromic behaviors. The Highest Occupied Molecular Orbital (HOMO) and Lowest Unoccupied Molecular Orbital (LUMO) energy levels of these polymers were determined in the range of -4.759 to -4.801 and -1.758 to -2.002 eV (vs the vacuum level) by cyclic voltammetry method consisting with the results of quantum chemical calculation well, respectively. The polymer films revealed excellent stability of electrochromic characteristics for the radical cations generated, changing color from original yellowish to green and blue, with the absorption changing from ultraviolet to near-infrared.
机译:通过常规的两步聚合方法合成了一系列新的彩色近红外电致变色芳族聚酰亚胺。所有聚合物均显示出出色的热稳定性,即在氮气中损失超过593°C的20 wt%,并且炭产率高(在750°C时高于68%)。另外,聚合物膜显示出可逆的电化学氧化,高着色效率,低切换时间和阳极绿色电致变色行为。通过循环伏安法将这些聚合物的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的能级确定在-4.759至-4.801和-1.758至-2.002 eV(相对于真空度)的范围内量子化学计算的结果分别很好。聚合物薄膜显示出对于所产生的自由基阳离子具有出色的电致变色特性稳定性,其颜色从原来的淡黄色变为绿色和蓝色,而吸收率则从紫外线变为近红外。

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