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首页> 外文期刊>Advanced Functional Materials >Paper-Based Electrochromic Devices Enabled by Nanocellulose-Coated Substrates
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Paper-Based Electrochromic Devices Enabled by Nanocellulose-Coated Substrates

机译:纳米纤维素涂层基底可实现纸基电致变色器件

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摘要

As environmental considerations for both the processing and disposal of electronic devices become increasingly important, the ability to replace plastic and glass substrates with bioderived and biodegradable materials remains a major technological goal. Here, the use of cellulose nanofiber-coated paper is explored as an environmentally benign substrate for preparing low-resistance (460 omega sq(-1)), colorless (a* = -2.3, b* = -2.7) printed poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) electrodes. The PEDOT:PSS/paper electrodes support the reversible oxidation of three electrochromic polymers (ECPs) (cyan, magenta, and yellow), affording the possibility for fully printed, color displays on paper. Lateral electrochromic devices (ECDs) incorporating an ion gel electrolyte are demonstrated where a magenta-to-colorless device achieves a color contrast (Delta E*) of 56 owing to a highly color-neutral bleached state of the ECP (a* = -0.5, b* = 2.9). Black-to-colorless devices achieve Delta E* = 29 and are able to retain 86% of their color contrast after 9000 switches. The switching times of these lateral devices are quantified through colorimetric image analysis which shows comparable performance for devices constructed on paper as devices using ITO/glass electrodes (10 omega sq(-1)). The paper ECDs are then combusted in air leaving 3% of the initial mass at 600 degrees C, highlighting this approach as a promising route toward disposable displays.
机译:随着对电子设备的处理和处置的环境考虑变得越来越重要,用生物衍生和可生物降解的材料替代塑料和玻璃基板的能力仍然是主要的技术目标。在这里,探索了使用纤维素纳米纤维涂布纸作为对环境有益的基材,以制备低电阻(460 omega sq(-1)),无色(a * = -2.3,b * = -2.7)印刷的poly(3 ,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)电极。 PEDOT:PSS /纸电极支持三种电致变色聚合物(ECP)(蓝绿色,品红色和黄色)的可逆氧化,从而为在纸上完全印刷彩色显示器提供了可能性。展示了结合了离子凝胶电解质的横向电致变色器件(ECD),其中由于ECP的高度中性漂白状态,洋红色到无色器件的色差(Delta E *)为56(a * = -0.5 ,b * = 2.9)。黑色到无色的设备达到Delta E * = 29,并且在9000次切换后能够保留其86%的色彩对比度。这些侧向设备的开关时间通过比色图像分析进行量化,比色图像分析显示了与使用ITO /玻璃电极(10Ωsq(-1))的纸上设备相比具有可比的性能。然后,纸质ECD在空气中燃烧,在600摄氏度时留下3%的初始质量,这突显了这种方法是走向一次性显示器的一种有希望的途径。

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