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Investigation of Varying Particle Sizes of Dry-Deposited WO_3 Particles in Relation to Performance of Electrochromic Cell

机译:干沉积WO_3颗粒的不同粒径与电致变色电池性能的关系研究

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摘要

Electrochromic cells were fabricated via a nanoparticle deposition system (NPDS) using different particle sizes of monoclinic tungsten oxide (WO3). Mixtures of micro-and nano-sized WO3 powders in the ratios of WO3 (micro):WO3 (nano) = 9 : 1, 5 : 5 and 1 : 9 vol%, were used in this study. NPDS, which was used to fabricate the electrochromic layer, is a low-cost process that can cover a large deposition area and provides a highly porous film. This method can replace sol-gel and sputtering methods, which are expensive and have environmental issues. The WO3 electrochromic layers displayed different surface structures that could adsorb Li+ ions. The transmittance change, cyclic switching speed and coloration efficiency (CE) results demonstrated that the electrochromic cell made with the mixed WO3 (micro):WO3 (nano) powders had better performance than that of the electrochromic cell made with separate micro-sized single powders. Various analyses showed that the WO3 mixed powders contained larger sites for Li+ ion adsorption compared with the single-sized powder because of a structure consisting of a compact layer of micro-WO3 with a porous layer of nano-WO3. Consequently, a cell composed of mixed-particle electrochromic layer showed higher transmittance change, CE and electrochromic performance than a cell made with a micro-sized single powder.
机译:使用不同粒径的单斜氧化钨(WO3)通过纳米颗粒沉积系统(NPDS)制造电致变色电池。在这项研究中,使用了WO3(微米):WO3(纳米)= 9:1、5:5和1:9体积%的微米级和纳米级WO3粉末混合物。用于制造电致变色层的NPDS是一种低成本工艺,可以覆盖较大的沉积面积并提供高度多孔的薄膜。该方法可以代替昂贵且存在环境问题的溶胶-凝胶法和溅射法。 WO3电致变色层显示出可以吸附Li +离子的不同表面结构。透射率变化,循环切换速度和着色效率(CE)结果表明,混合WO3(微):WO3(纳米)粉末制成的电致变色电池的性能优于单独的微尺寸单一粉末制成的电致变色电池。 。各种分析表明,与单一尺寸的粉末相比,WO3混合粉末具有更大的Li +离子吸附位,这是因为其结构由微细WO3的致密层和纳米WO3的多孔层组成。因此,由混合颗粒电致变色层组成的电池比由微米尺寸的单一粉末制成的电池具有更高的透射率变化,CE和电致变色性能。

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