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Combination of Zinc Oxide and Antimony Doped Tin Oxide Nanocoatings for Glazing Application

机译:氧化锌和锑掺杂的氧化锡纳米涂料的组合用于上光应用

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Multilayered nanocoatings allow outstanding properties with broad potential for glazing applications. Here, we report on the development of a multilayer nanocoating for zinc oxide (ZnO) and antimony doped tin oxide (ATO). The combination of ZnO and ATO thin films with their promising optical properties is a cost-efficient alternative for the production of energy-efficient glazing. It is an effective modification of the building envelope to reduce current high domestic demand of electrical power for air conditioning, especially in hot climates like Saudi Arabia. In this paper, we report the development of a nanocoating based on the combination of ZnO and ATO. Principle material and film investigations were carried out on lab-scale by dip coating with chemical solution deposition (CSD), while with regard to production processes, chemical vapor deposition (CVD) processes were evaluated in a second stage of the film development. It was found that with both processes, high-quality thin films and multilayer coatings with outstanding optical properties can be prepared. While keeping the optical transmission in the visible range at around 80%, only 10% of the NIR (near infrared) and below 1% of UV (ultraviolet) light passes these coatings. However, in contrast to CSD, the CVD process allows a free combination of the multilayer film sequence, which is of high relevance for production processes. Furthermore, it can be potentially integrated in float glass production lines.
机译:多层纳米涂层具有出色的性能,在上光应用中具有广阔的潜力。在这里,我们报道了用于氧化锌(ZnO)和锑掺杂的氧化锡(ATO)的多层纳米涂层的开发。 ZnO和ATO薄膜的结合及其具有良好的光学性能是生产节能玻璃的经济有效选择。这是对建筑围护结构的有效修改,以减少当前国内对空调的高电力需求,尤其是在沙特阿拉伯这样的炎热气候下。在本文中,我们报道了基于ZnO和ATO的纳米涂层的发展。在实验室范围内通过化学溶液沉积(CSD)浸涂进行了主要的材料和膜研究,而在生产过程中,在膜开发的第二阶段评估了化学气相沉积(CVD)过程。已经发现,通过这两种方法,可以制备具有优异光学性能的高质量薄膜和多层涂层。虽然在可见光范围内的光透射率保持在80%左右,但只有10%的NIR(近红外)和低于1%的UV(紫外线)能通过这些涂层。然而,与CSD相反,CVD工艺允许多层膜序列的自由组合,这与生产工艺高度相关。此外,它可以潜在地集成到浮法玻璃生产线中。

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