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A flexible and high-performance electrochromic smart window produced by WO3/Ti3C2Tx MXene hybrids

机译:由WO3 / TI3C2TX MXENE杂种生产的灵活高性能的电致聊天窗口

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Tungsten oxide (WO3) is currently the most popular electrochromic (EC) material for EC devices due to its excellent electrochemical stability and EC reversibility. However, WO3 generally has low conductivity, causing a high charge transport barrier; consequently, the EC devices based on WO3 have long coloration/bleaching response time, low optical density, and low coloration efficiency. In this work, we demonstrated that the introduction of two-dimensional titanium carbide (2D Ti3C2Tx), a member of MXene, with excellent electrical conductivity leads to a significantly reduced charge transport barrier within WO3-based EC devices. The EC device based on the WO3/2D Ti3C2Tx hybrid film fabricated by the spray-coating method exhibits a significantly enhanced EC performance with an optical modulation of 57.61% and a coloration efficiency of 126 cm(2) C-1. Interestingly, the switching response time is 1.5 s for bleaching and 2.7 s for coloration, and is 46.8% (for bleaching) and 62% (for coloration) shorter than the bare WO3-based EC device. Besides, a large-sized flexible smart window with an area of 15 cm x 15 cm is successfully fabricated and demonstrated. Our results provide insights into the effects of coupling WO3 and Ti3C2Tx to construct an outstanding EC device for smart window applications.
机译:氧化钨(WO3)由于其优异的电化学稳定性和电化学可逆性,是目前最常用的电化学变色材料。然而,WO3通常具有低导电性,导致高电荷传输势垒;因此,基于WO3的EC器件具有较长的着色/漂白响应时间、较低的光密度和较低的着色效率。在这项工作中,我们证明了二维碳化钛(2D Ti3C2Tx)的引入,一种MXene的成员,具有优异的导电性,导致WO3基EC器件中的电荷传输势垒显著降低。基于喷涂法制备的WO3/2D Ti3C2Tx杂化膜的EC器件具有显著增强的EC性能,光学调制为57.61%,着色效率为126 cm(2)C-1。有趣的是,漂白和着色的开关响应时间分别为1.5秒和2.7秒,比裸WO3基EC器件分别短46.8%(漂白)和62%(着色)。此外,还成功制作并演示了一个面积为15cm×15cm的大型柔性智能窗。我们的研究结果提供了对耦合WO3和Ti3C2Tx的影响的见解,以构建用于智能窗口应用的优秀EC设备。

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