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High-performance flexible electrochromic device based on facile semiconductor-to-metal transition realized by WO3·2H2O ultrathin nanosheets

机译:WO3·2H2O超薄纳米片实现基于半导体-金属过渡的高性能柔性电致变色器件

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摘要

Ultrathin nanosheets are considered as one kind of the most promising candidates for the fabrication of flexible electrochromic devices (ECDs) due to their permeable channels, high specific surface areas, and good contact with the substrate. Herein, we first report the synthesis of large-area nanosheets of tungsten oxide dihydrate (WO3·2H2O) with a thickness of only about 1.4 nm, showing much higher Li+ diffusion coefficients than those of the bulk counterpart. The WO3·2H2O ultrathin nanosheets are successfully assembled into the electrode of flexible electrochromic device, which exhibits wide optical modulation, fast color-switching speed, high coloration efficiency, good cyclic stability and excellent flexibility. Moreover, the electrochromic mechanism of WO3·2H2O is further investigated by first-principle density functional theory (DFT) calculations, in which the relationship between structural features of ultrathin nanosheets and coloration/bleaching response speed is revealed.
机译:由于超薄纳米片的可渗透通道,高比表面积以及与基材的良好接触,它们被认为是制造柔性电致变色器件(ECD)的最有希望的候选者之一。在此,我们首先报道了大面积的氧化钨二水合物(WO3·2H2O)纳米片的合成,其厚度仅为约1.4 nm,显示出的Li + 扩散系数比本体的高得多。 。将WO3·2H2O超薄纳米片成功组装到柔性电致变色器件的电极中,该器件具有宽的光调制,快速的色彩转换速度,较高的着色效率,良好的循环稳定性和优异的柔韧性。此外,通过第一原理密度泛函理论(DFT)计算进一步研究了WO3·2H2O的电致变色机理,揭示了超薄纳米片的结构特征与着色/漂白响应速度之间的关系。

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