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首页> 外文期刊>ACS applied materials & interfaces >Highly Stable and Rapid Switching Electrochromic Thin Films Based on Metal-Organic Frameworks with Redox-Active Triphenylamine Ligands
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Highly Stable and Rapid Switching Electrochromic Thin Films Based on Metal-Organic Frameworks with Redox-Active Triphenylamine Ligands

机译:基于金属有机框架的高度稳定和快速切换电致变色薄膜用氧化还原活性三苯胺配体

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摘要

Metal-organic frameworks (MOFs), known for their tailorable porous structures and large specific surface areas, are appealing for electrochromic applications as their abundant pores may greatly benefit the charge transport required for electrochromic switching. Herein, for the first time, a simple, scalable, and cost-effective electrochemical deposition method for fabrication of high-performance and durable MOFs-based electrochromic films with redox-active ligands was developed. The fabricated film can achieve rapid switching speed (both coloration and bleaching time <5 s) because the inherent cavities of the MOFs greatly facilitate ion insertion and extraction. In addition, the film constructed with optimized parameters shows a high optical contrast of 65%@700 nm and can be stably switched for 1000 cycles with <5% contrast attenuation, which is by far the best cycling performance for MOFs-based electrochromic materials ever reported. Furthermore, our method enables the scalable preparation of large-area MOFs-based electrochromic thin films without using large high-pressure reaction vessels, and the as-prepared film in this work could be switched well between colored and bleached states. This new method, therefore, opens up a new avenue to broaden the use of MOFs-based thin films for electrochromic applications.
机译:金属有机框架(MOF)以其定制的多孔结构和大的比表面积而闻名,对电致变色应用具有吸引力,因为它们丰富的孔可能会极大地有利于电致变色切换所需的电荷传输。在此,首次进行简单,可扩展的和具有成本有效的电化学沉积方法,用于制造具有氧化还原活性配体的高性能和耐用的MOF基电致变色膜的制备。由于MOF的固有空腔极大地促进了离子插入和提取,所以制造的薄膜可以实现快速的开关速度(着色和漂白时间<5秒)。此外,用优化参数构造的膜显示出65%@ 700nm的高光学对比度,可以稳定地切换1000个循环,对比度衰减<5%的衰减,这是迄今为止有史以来的MOF基电致变色材料的最佳循环性能报道。此外,我们的方法使得能够在不使用大型高压反应容器的情况下进行大面积MOF的电致变色薄膜的可伸缩制备,并且在该工作中的制备薄膜可以在有色和漂白状态之间切换良好。因此,这种新方法开辟了新的途径,以扩大使用基于MOF的薄膜用于电致变色应用。

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