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Graphene as an Efficient Interfacial Layer for Electrochromic Devices

机译:石墨烯作为电致变色器件的有效界面层

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This study presents an interfacial modification strategy to improve the performance of electrochromic films that were fabricated by a magnetron sputtering technique. High-quality graphene sheets, synthesized by chemical vapor deposition, were used to modify fluorine-doped tin oxide substrates, followed by the deposition of high-performance nanocomposite nickel oxide electrochromic films. Electrochromic cycling results revealed that a near-complete monolayer graphene interfacial layer improves the electrochromic performance in terms of switching kinetics, activation period, coloration efficiency, and bleached-state transparency, while maintaining similar to 100% charge reversibility. The present study offers an alternative route for improving the interfacial properties between electrochromic and transparent conducting oxide films without relying on conventional methods such as nanostructuring or thin film composition control.
机译:这项研究提出了一种界面改性策略,以改善通过磁控溅射技术制造的电致变色膜的性能。通过化学气相沉积合成的高质量石墨烯片材被用于修饰氟掺杂的氧化锡衬底,然后沉积高性能的纳米复合氧化镍电致变色膜。电致变色循环结果表明,接近完整的单层石墨烯界面层在切换动力学,活化期,着色效率和漂白态透明性方面改善了电致变色性能,同时保持了类似于100%的电荷可逆性。本研究提供了另一种途径,以改善电致变色和透明导电氧化物膜之间的界面性能,而无需依赖诸如纳米结构或薄膜组成控制等常规方法。

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