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Lithiation of WO3 films by evaporation method for all-solid-state electrochromic devices

机译:全固态电致变色装置蒸发方法WO3薄膜的锂化

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Lithium (Li) electrolyte plays an important role in the electrochromic devices (ECDs), however, there are few studies on the matching between Li content and electrochromic layer in all-solid-state ECDs. In this work, lithiation WO3 films with different Li thickness were prepared by evaporation method to investigate the effect of Li thickness on the optical properties of WO3 films. Meanwhile, the Li storage capacity of WO3 in liquid electrolyte was calculated. The results showed that the optimal thickness of Li for 450 nm WO3 film prepared by evaporation was 42 nm. All-solid-state ECD glass/ITO/NiO/ZrO2/Li/WO3/ITO with optimal Li thickness exhibited large optical transmittance modulation (64.9% at 680 nm and 52.5% at 550 nm), high coloration efficiency (CE, 106.6 cm(2)/C at 550 nm) and superior cycle stability (98% retention of the maximum optical modulation after 4000 cycles). This work provides a new idea for the design and preparation of all-solid state ECDs. (c) 2020 Elsevier Ltd. All rights reserved.
机译:锂(Li)电解质在电致变色装置(ECD)中起重要作用,然而,少量关于全固态ECD中的LI含量和电致变色层之间的匹配。在这项工作中,通过蒸发方法制备具有不同锂厚度的锂化WO3薄膜,以研究Li厚度对WO3薄膜光学性质的影响。同时,计算了WO3在液体电解质中的锂储存能力。结果表明,通过蒸发制备的450nm WO3薄膜的Li的最佳厚度为42nm。具有最佳Li厚度的全固态ECD玻璃/ ITO / NIO / ZRO2 / LI / WO3 / ITO具有大的光学透射率调制(64.9%,680nm,550nm处为52.5%),高着色效率(CE,106.6厘米(2)/ c处于550nm)和优异的循环稳定性(98%在4000次循环后保持最大光学调制)。这项工作为全固态ECD的设计和准备提供了新的思路。 (c)2020 elestvier有限公司保留所有权利。

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