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Enhanced electrochromic properties of nanorod based WO_3 thin films with inverse opal structure

机译:具有反蛋白石结构的纳米棒基WO_3薄膜的增强电致变色性能

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Tungsten trioxide (WO3) is a typical electrochromic material that exhibits reversible optical property changes depending on the applied voltage. Previously, studies for its application in smart windows and various technologies have been made. However, improvements to the WO3-specific low color change rate are needed. The above problem can be solved by fabricating a color change layer with a large specific surface area through physical/chemical modification of the WO3layer and structural control for smooth electrolyte injection. In this study, three dimensional porous WO3nanostructures were prepared using polystyrene nanospheres. Inverse opal structured WO3thin films with high porosity showed excellent electrochromic properties. The change in transmittance was 86% at a wavelength of 700 nm; the response time was 5.55 s; and the coloration efficiency was calculated at 154.94 cm2/C. The response time was about 3 times faster and the coloration efficiency was about 2 times higher than that of the flat thin film. As a result, the WO3thin film with an inverted opal structure exhibited excellent electro reversibility and enhanced properties.
机译:三氧化钨(WO3)是一种典型的电致变色材料,根据所施加的电压,其可逆的光学性能会发生变化。以前,已经对其在智能窗户和各种技术中的应用进行了研究。但是,需要改进WO3特定的低变色率。通过WO 3层的物理/化学改性和用于平滑的电解质注入的结构控制来制造具有大的比表面积的变色层,可以解决上述问题。在这项研究中,使用聚苯乙烯纳米球制备了三维多孔WO3纳米结构。具有高孔隙率的反蛋白石结构WO3薄膜表现出出色的电致变色性能。在700 nm的波长下,透射率的变化为86%;响应时间为5.55 s;显色效率为154.94 cm2 / C。响应时间比平坦薄膜快约3倍,着色效率约高2倍。结果,具有反蛋白石结构的WO 3薄膜具有优异的电可逆性和增强的性能。

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