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首页> 外文期刊>Electrochimica Acta >Highly-conductive porous poly(ether ether ketone) electrolyte membranes for flexible electrochromic devices with variable infrared emittance
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Highly-conductive porous poly(ether ether ketone) electrolyte membranes for flexible electrochromic devices with variable infrared emittance

机译:具有可变红外线发射的柔性电致变色装置的高导电多孔聚(醚醚酮)电解质膜

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摘要

Electrolytes with superior ion conductivity are highly demanded for infrared variable emittance devices (IR-VEDs) to realize fast response time and good IR emittance modulation ability. Herein, a poly(ether ether ketone) (PEEK) membrane featured by well-connected pore structure and high porosity is proposed for the first time as the electrolyte material for the IR-VEDs. In contrast to the conventionally used gel electrolytes, the newly designed porous PEEK membrane is capable of obtaining high liquid electrolyte loading while maintaining good membrane integrity, resulting in high conductivity (6.8 x 10(-3) S cm(-1)) and simple device assembly process. Flexible IR-VEDs have been fabricated by employing polyaniline films deposited on porous Au electrode as the IR regulation layer. By controlling the loading of liquid electrolyte in porous electrode, continuously high-speed ion transfer channels could be constructed between the PEEK electrolyte membrane and the Au electrode in the devices taking advantage of their porous structure. The resultant IR-VED exhibits an excellent overall performance integrating superior IR emittance adjustment ability (the emittance change in the wavelength range of 2.5-25 mu m is 0.47), fast switching time (<10 s) and good cycling stability, indicating promising applications in dynamic thermal control fields. (C) 2019 Elsevier Ltd. All rights reserved.
机译:具有优异离子电导率的电解质对于红外可变射精装置(IR型veds)来实现快速响应时间和良好的IR发射调制能力。这里,首次提出由连接孔结构和高孔隙率特征的聚(醚醚酮)(PEEK)膜作为IR-VED的电解质材料。与常规使用的凝胶电解质相反,新设计的多孔帕尔膜能够获得高液体电解质载荷,同时保持良好的膜完整性,导致高导电性(6.8×10(3)厘米(-1))和简单设备组装过程。通过使用沉积在多孔Au电极上的聚苯胺薄膜作为IR调节层来制造柔性IR-VED。通过控制多孔电极中的液体电解质的负载,可以在PEEK电解质膜和利用它们的多孔结构的装置中构造连续的高速离子转移通道。所得到的IR-VED表现出优异的整体性能,整合卓越的IR发射调节能力(2.5-25 mu m的波长范围内的发射率变化为0.47),切换时间快(<10秒)和良好的循环稳定性,表明有前途的应用在动态热控制场中。 (c)2019 Elsevier Ltd.保留所有权利。

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