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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Investigation of dry-deposited ion storage layers using various oxide particles to enhance electrochromic performance
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Investigation of dry-deposited ion storage layers using various oxide particles to enhance electrochromic performance

机译:使用各种氧化物颗粒进行干沉积离子储存层,提高电致变色性能

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AbstractVarious ion storage layers were fabricated on ITO-glass substrates by a dry deposition process to study their effects in electrochromic devices. Dense nickel oxide (NiO) film was formed using micro-sized NiO particles, a porous film was formed using nano-sized NiO particles, and a porous antimony tin oxide (ATO) film was formed using nano-sized ATO particles. Electrochemical analyses revealed that the nano-porous NiO layer had a high charge capacity with a low charge transfer resistance. Moreover, an electrochromic device using a NiO film with nano-sized pores had an optical transmittance difference of 42% and a stable cyclic transmittance for 1h at a wavelength of 630nm. We assessed the effects of the different ion storage layers by evaluating the electrochromic device in terms of the following important properties: 1) high charge capacity, 2) low charge transfer resistance at the interface between film and electrolyte, and 3) high diffusion rate from film to electrolyte. Based on these criteria, we found that the ion storage layer formed with nano-sized NiO particles best satisfied these conditions. Finally, we confirmed that stable and high electrochromic performance can be achieved through improving these properties in ion storage layers.Highlights?Io
机译:<![cdata [ 抽象 通过干沉积过程在ITO-玻璃基板上制造各种离子存储层,以研究它们在电致变色器件中的作用。使用微尺寸的NiO颗粒形成致密的氧化镍(NIO)膜,使用纳米大小的NiO颗粒形成多孔膜,并且使用纳米尺寸的ATO颗粒形成多孔锑锡氧化锡(ATO)膜。电化学分析显示,纳米多孔NiO层具有低电荷转移电阻的高充电容量。此外,使用具有纳米孔的NiO膜的电致变色装置具有42%的光学透射率,并且在630nm的波长下稳定的循环透射率为1h。我们通过在以下重要特性方面评估电致变色装置来评估不同离子储存层的效果:1)高电荷容量,2)薄膜和电解质之间的界面处的低电荷转移电阻,以及3)高的扩散速率电解电解质。基于这些标准,我们发现,用纳米尺寸的NiO颗粒形成的离子存储层最适合这些条件。最后,我们证实可以通过改善离子储存层中的这些性能来实现稳定和高电致变色的性能。 突出显示 IO

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