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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Self-doped tungsten oxide films induced by in situ carbothermal reduction for high performance electrochromic devices
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Self-doped tungsten oxide films induced by in situ carbothermal reduction for high performance electrochromic devices

机译:通过原位碳热还原为高性能电致变色装置诱导自掺杂钨膜

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摘要

As a promising electrochromic material, tungsten oxide is of great value for applications in smart windows and energy saving displays. Fabricating high performance tungsten oxide by the cost-effective way is immensely in demand for promoting the large-scale application. Herein, we demonstrate a green and economic route in developing self-doped tungsten oxide (WO3-x) films. Through the precursor design and carbonization process, amorphous carbon can be obtained and used as an in situ reducing agent. Then, oxygen vacancies and nanopores were generated in WO3-x films by carbothermal reduction during annealing. The self-doping WO3-x film exhibits a remarkable optical modulation (B70% at 680 nm) in both visible and near infrared bands. The electrochromic switching behavior of the WO3-x film shows a fast response speed (7 s for coloring and 15 s for bleaching), a high coloration efficiency up to 62 cm(2) C-1 and a good cycling stability. The enhanced electrochromic properties are attributed to the large specific surface area and oxygen vacancies which facilitate the ion insertion and extraction at the interface. This work offers a highly active electrochromic material as well as an ingenious synthesis strategy for numerous oxygen deficient functional oxides.
机译:作为有前途的电致变色材料,氧化钨对于智能窗口和节能显示器的应用具有很大的价值。通过成本效益的方式制造高性能氧化钨,这是促进大规模应用的需求。在此,我们在开发自掺杂碳化钨(WO3-X)膜上展示了一种绿色和经济途径。通过前体设计和碳化过程,可以获得无定形碳并用作原位还原剂。然后,在退火期间通过Carbothermal降低在WO3-X膜中产生氧空位和纳米孔。在可见和近红外条带中,自掺杂WO3-X膜在可见和近红外条带中表现出显着的光学调制(680nm)。 WO3-X薄膜的电致变色切换行为显示出快速响应速度(7秒,用于着色,漂白为15秒),高度高度的高色效率高达62cm(2)C-1和良好的循环稳定性。增强的电致变色特性归因于大的比表面积和氧空位,其促进了界面处的离子插入和提取。这项工作提供了高度活跃的电致变色材料以及许多缺氧官能氧化物的巧妙的合成策略。

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