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Improved electrochromic performances of WO3-based thin films via addition of CNTs

机译:通过添加CNT改善WO3基薄膜的电致变色性能

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摘要

Construction of a composite WO3 film has been considered to be an important way to improving the electrochemical performances and electrochromic properties. Herein, we fabricated a composite film containing WO3 nanoparticles, chitosan (CS), and carbon nanotubes (CNTs) by a layer-by-layer technique (LbL). The composite film displays light black to dark blue over the potential range from 0 to -1.5 V. Compared with the WO3/CS film, the WO3/CS-CNTs film displays increased current densities, which supported a greater number of sites for Li+ ions intercalation and extraction. Furthermore, the electrochromic performance of the composite film is enhanced by incorporation of CNTs into the WO3 film, resulting in coloration efficiency of 79.2 cm(2) C-1 and optical contrast of 13.5 % at 800 nm under a square wave potential from -1.5 to +1.5 V. Therefore, the improved electrochromic properties could be achieved using WO3 and CNTs composite film.
机译:复合WO3膜的构造已被认为是改善电化学性能和电致变色性能的重要方法。在本文中,我们通过逐层技术(LbL)制备了包含WO3纳米颗粒,壳聚糖(CS)和碳纳米管(CNT)的复合膜。该复合膜在0至-1.5 V的电位范围内显示出浅黑色至深蓝色。与WO3 / CS膜相比,WO3 / CS-CNTs膜显示出更高的电流密度,从而支持了更多的Li +离子位点插层和萃取。此外,通过将CNT掺入WO3膜中来增强复合膜的电致变色性能,从而在方波电势为-1.5的情况下,在800 nm处的着色效率为79.2 cm(2)C-1,光学对比度为13.5%。至+1.5V。因此,使用WO3和CNTs复合膜可以实现改善的电致变色性能。

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