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Polyvinyl butyral-based gel polymer electrolyte films for solid-state laminated electrochromic devices

机译:基于聚乙烯醇丁脲的凝胶聚合物电解质,用于固态层压电致变色装置

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Polyvinyl butyral-based gel polymer electrolyte films (PVB-based GPEFs) were prepared by casting method. The surface morphology and ionic conductivity of the PVB-based GPEFs were measured; cyclic voltammetry behavior, optical properties, and coloration efficiency of the devices were investigated. The SEM shows amorphous polymer matrix with interval and micropores among the molecule chains. With different volume of ionic liquid, the ionic conductivity of electrolyte films increased up to 4.0 x 10(--5) and 6.2 x 10(-5) S/cm at 25 and 50 A degrees C, respectively. Electrochromic devices (ECDs) with glass/ITO/WO3/PVB-based GPEF/Ni1-xO/ITO/glass configuration were prepared following the technology of laminated safety glass. The best device provided excellent electrochromic performances with high optical modulation of 65.8% at 550 nm, coloration efficiency of 175.34 cm(2)/C, and long-term stability. In addition, small color fading of 4.8% was observed under self-discharging conditions for 16 h, proving that the PVB-based ECD possesses sufficient memory effect as smart window.
机译:通过铸造方法制备基于聚乙烯丁脲基凝胶聚合物电解质电解质膜(基于PVB的GPEF)。测量了PVB的GPEF的表面形态和离子电导率;研究了器件的循环伏安行为,光学性能和着色效率。 SEM显示分子链中的间隔和微孔的非晶聚合物基质。具有不同体积的离子液体,电解质膜的离子电导率分别在25和50℃下分别增加至4.0×10( - 5)和6.2×10(-5)S / cm。通过玻璃/ ITO / WO3 / PVB的电致变色器件(ECDS)进行基于玻璃/ ITO / WO3 / PVB的GPEF / NI1-XO / ITO /玻璃构型是通过层压安全玻璃技术制备的。最佳装置提供优异的电致变色性能,高光学调节为65.8%,在550nm,着色效率为175.34cm(2)/ c,长期稳定性。此外,在自放电条件下观察到4.8%的小颜色衰落为16小时,证明了基于PVB的ECD具有足够的记忆效果作为智能窗口。

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