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Enhanced electrochromic and energy storage performance in mesoporous WO3 film and its application in a bi-functional smart window

机译:增强电致变色的和能源存储在介孔WO3薄膜及其性能应用程序在bi-functional智能窗口

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Construction of multifunctional photoelectrochemical energy devices is of great importance to energy saving. In this study, we have successfully prepared a mesoporous WO3 film on FTO glass via a facile dip-coating sol-gel method; the designed mesoporous WO3 film exhibited advantages including high transparency, good adhesion and high porosity. Also, multifunctional integrated energy storage and optical modulation ability are simultaneously achieved by the mesoporous WO3 film. Impressively, the mesoporous WO3 film exhibits a noticeable electrochromic energy storage performance with a large optical modulation up to 75.6 at 633 nm, accompanied by energy storage with a specific capacity of 75.3 mA h g(-1). Furthermore, a full electrochromic energy storage window assembled with the mesoporous WO3 anode and PANI nanoparticle cathode is demonstrated with large optical modulation and good long-term stability. Our research provides a new route to realize the coincident utilization of optical-electrochemical energy.
机译:建设多功能光电化学能源设备是伟大的对节能的重要性。已经成功地准备了介孔WO3电影吗在FTO玻璃通过灵巧的浸涂溶胶-凝胶法方法;表现出优势包括高透明度,附着力好,孔隙度高。多功能综合能源储存和同时光学调制能力通过介孔WO3薄膜。令人印象深刻的是,介孔WO3薄膜的展品明显的电致变色的能量储存与大型光学调制性能75.6%在633 nm,伴随着能量储存马与特定的容量为75.3 h g(1)。此外,一个完整的电致变色的储能窗口与介孔WO3阳极组装聚苯胺纳米粒子和阴极大型光学调制和良好的长期稳定。实现同步利用optical-electrochemical能量。

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