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Electrodeposition of amorphous WO3 on SnO2–TiO2 inverse opal nano-framework for highly transparent, effective and stable electrochromic smart window

机译:在SnO2-TiO2反蛋白石纳米框架上电沉积无定形WO3,以实现高度透明,有效和稳定的电致变色智能窗口

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In recent years, there has been significant advancement in smart window technologies due to their effectiveness in reducing energy consumption of indoor lighting and air-conditioning in buildings. Electrochromic (EC) materials, in particular, have been widely studied as they provide a simple method for tuning or modulating visible light and infrared (IR) transmittance. In this work, a novel hybrid, multi-layered SnO _(2) –TiO _(2) –WO _(3) inverse opal (IO) nanostructure has been fabricated via dip-coating and electrodeposition process. This hybrid nanostructure allows an electrochromic smart window for effective near infrared (NIR) modulation, with high visible transparency and durable EC cycling stability. The visible transparency of as-fabricated hybrid multi-layered SnO _(2) –TiO _(2) –WO _(3) IO was measured to be in the range of 67.2–88.0% in the bleached state and 67.0–74.4% in the colored state, respectively. Furthermore, the hybrid nanostructure is also able to modulate up to 63.6% NIR radiation at the wavelength of 1200 nm and maintain approximately 82.6% of its NIR blockage capability after 750 reversible cycles. The hybrid multi-layered SnO _(2) –TiO _(2) –WO _(3) IO nanostructure in this study can potentially be an effective and stable EC material for advanced smart window technology.
机译:近年来,由于智能窗技术在减少建筑物内室内照明和空调的能耗方面的有效性,已取得了显着进步。特别是电致变色(EC)材料已得到广泛研究,因为它们提供了一种用于调整或调制可见光和红外(IR)透射率的简单方法。在这项工作中,通过浸涂和电沉积工艺制备了一种新型的杂化多层SnO _(2)-TiO _(2)-WO _(3)反蛋白石(IO)纳米结构。这种混合纳米结构允许电致变色智能窗实现有效的近红外(NIR)调制,并具有高可见光透明度和持久的EC循环稳定性。混合后的多层多层SnO _(2)-TiO _(2)-WO _(3)IO的可见透明性在漂白状态下的范围为67.2-88.0%,在67.0-74.4%范围内。分别处于有色状态。此外,该杂化纳米结构还能够在1200 nm的波长下调制高达63.6%的NIR辐射,并在750个可逆循环后保持其近红外阻挡能力的约82.6%。这项研究中的混合多层SnO _(2)–TiO _(2)–WO _(3)IO纳米结构可能是先进智能窗技术的有效且稳定的EC材料。

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