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In situ fabrication of ZnO nanorods/Ag hybrid film with high mid-infrared reflectance for applications in energy efficient windows

机译:原位制备具有高中红外反射率的ZnO纳米棒/ Ag杂化膜,用于节能窗户

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Energy efficient windows are playing an important role in view of the fabrication of Energy-Saving and Eco-Friendly devices which show high energy efficiency among energy conservation buildings. In order to modulate middle-far range infrared radiation, a new strategy based on modulating semiconducting oxides ordered array structure and coating of metal element was proposed for energy efficient windows. In this work, ZnO nanorods/Ag hybrid film with high transmittance in visible region and high reflectance in mid-infrared region was prepared via hydrothermal method and silver-mirror coating above quartz glass that has great potential application in energy efficient windows for infrared radiation cooling. In detail, ZnO nanorods arrays were prepared via in situ fabrication with spin-coating method and hydrothermal process at low temperature. While Ag nanoparticles were coated on as-prepared ZnO nanorods via a silver-mirror method which is also in line with the concept of energy conservation. According to characterization results, ZnO nanorods were grown along the wurtzite c axis perpendicular to the quartz substrate, and Ag nanoparticles were coated on ZnO nanorods with a tight interrelation. ZnO nanorods/Ag hybrid film showed high transmittance of 62% in the visible region and high reflectance above 90% in the mid-infrared region. Therefore, ZnO nanorods/Ag hybrid film obtained in this work indicates excellent optical performance in visible transmission and mid-infrared reflection, and this hybrid film is illustrated to be good candidates for saving energy in the field of energy efficient windows.
机译:鉴于节能和环保设备的制造,节能窗户在节能建筑中显示出很高的能源效率,因此发挥着重要作用。为了调制中远红外辐射,提出了一种基于半导体氧化物有序阵列结构和金属元素涂层的新策略,用于节能窗。本文通过水热法和在石英玻璃上方的银镜涂层制备了在可见光区域具有高透射率,在中红外区域具有高反射率的ZnO纳米棒/ Ag杂化膜,该膜在石英玻璃的节能窗中具有巨大的潜在应用价值。 。详细地,通过旋涂法和低温水热法原位制备ZnO纳米棒阵列。尽管银纳米颗粒通过银镜法涂覆在制备好的ZnO纳米棒上,这也符合节能的概念。根据表征结果,沿垂直于石英基板的纤锌矿c轴生长ZnO纳米棒,并将Ag纳米颗粒以紧密的相互关系包覆在ZnO纳米棒上。 ZnO纳米棒/ Ag杂化膜在可见光区域显示62%的高透射率,在中红外区域显示90%以上的高反射率。因此,在这项工作中获得的ZnO纳米棒/ Ag杂化膜在可见光透射和中红外反射方面显示出优异的光学性能,并且表明该杂化膜是在节能窗户领域中节省能源的良好候选者。

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