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Ultra-large optical modulation of electrochromic porous WO3 film and the local monitoring of redox activity

机译:电致变色多孔WO3薄膜的超大光学调制和氧化还原活性的局部监测

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摘要

Porous WO3 films with ultra-high transmittance modulation were successfully fabricated on different substrates by a novel, facile and economical pulsed electrochemical deposited method with 1.1 s interval time between each pulse. The near ideal optical modulation (97.7% at 633 nm), fast switching speed (6 and 2.7 s), high coloration efficiency (118.3 cm2 C–1), and excellent cycling stability are achieved by the porous WO3 on ITO-coated glass. The outstanding electrochromic performances of the porous WO3 film were mainly attributed to the porous structure, which facilitates the charge-transfer, promotes the electrolyte infiltration and alleviates the expansion of the WO3 during H+ insertion compared to that of the compact structure. In addition, the relationships between the structural and electrochemical activity of the electrochromic WO3 films were further explored by the scanning electrochemical microscopy. These results testify that the porous structure can promote the infiltration of electrolyte and reduce the diffusion path, which consequently enhance the electrochemical activity.
机译:通过新颖,便捷,经济的脉冲电化学沉积方法,在每个脉冲之间间隔1.1 s的时间,成功地在不同的基板上制备了具有超高透射率调制的WO3多孔膜。接近理想的光调制(在633 nm处为97.7%),快速的切换速度(6和2.7 s),较高的着色效率(118.3 cm 2 C –1 )和ITO涂层玻璃上的多孔WO3可实现出色的循环稳定性。 WO 3多孔膜的出色电致变色性能主要归因于其多孔结构,与H 2+相比,其在H + 插入过程中促进了电荷转移,促进了电解质的渗透并减轻了WO 3的膨胀。紧凑的结构。另外,通过扫描电化学显微镜进一步探索了电致变色WO 3膜的结构和电化学活性之间的关系。这些结果证明,多孔结构可促进电解质的渗透并减少扩散路径,从而增强电化学活性。

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