首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Structure evolution of electrochromic devices from 'face-to-face' to 'shoulder-by-shoulder'
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Structure evolution of electrochromic devices from 'face-to-face' to 'shoulder-by-shoulder'

机译:从“面对面”到“肩并肩”的电致变色装置的结构演变

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摘要

A traditional electrochromic device contains at least five functional layers; the electrochromic film exactly faces the counter electrode and matches it in size and color. This face-to-face structure is cumbersome for device flexibility and integration; thus, it is difficult for these devices to meet sophisticated application needs. Concurrently, a lateral electrochromic structure in which the electrochromic film and the counter electrode are arranged in a shoulder-by-shoulder manner was proved to be a superior choice for many specific applications. However, systematic exploration of the shoulder-by-shoulder EC structure is lacking. Herein, a WO3 vs. WO3 electrochromic system was constructed to systematically discuss the EC characteristics and superior applications of the shoulder-by-shoulder structure. Surprisingly, when one EC unit in the shoulder-by-shoulder system was first colored at a certain transmittance, a much faster response time and a lower driving voltage than those of the traditional face-to-face structure were achieved. Additionally, this configuration endowed the counter electrode with great freedom in terms of material, shape and placement position, and it showed great superiority in vast applications. These results provide insight into the structure evolution of electrochromic devices.
机译:传统的电致变色装置含有至少五个功能层;电致变色膜精确面向对电极,并将其与尺寸和颜色相匹配。这种面对面的结构对于装置的灵活性和集成繁琐;因此,这些设备难以满足复杂的应用需求。同时,被证明,其中电致变色膜和对电极布置的横向电致变色结构被证明是许多特定应用的优选选择。然而,缺乏对肩部肩部EC结构的系统探索。在此,构建了WO3与WO3电致变色系统以系统地讨论EC特性和逐肩结构的优异应用。令人惊讶的是,当肩肩系统中的一个EC单元以一定的透射率上色,实现比传统面对面结构的响应时间更快得多的响应时间和较低的驱动电压。另外,这种配置在材料,形状和放置位置方面具有极大的自由度,并且在广泛的应用中表现出很大的优势。这些结果提供了对电致变色装置的结构演变的洞察力。

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