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Low emission sputtered coatings for smart glazing

机译:低辐射溅射镀膜,用于智能玻璃

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Optically selective low-emissive (low-E) filters, constituted of different ultrathin layers and suitable to an effective employment in glazing technology for low energy consumption buildings have been designed and fabricated on glass by means of sputtering technique. Sputtering process parameters, layers sequence of the stacked structure and thicknesses of the layers have been selected by means of a semi-empirical approach. Once defined optical requirements of high visible transmittance and low emissivity (<; 5%), proper materials have been selected as metals and ceramics to create the optical filter. In particular, silver as highly IR reflecting metal and aluminium nitride as transparent insulating material, have been alternated in a very simple and highly effective coating formulation. However, preliminary optical simulation of optimized low-E coating did not take into account critical technological aspects such as the difficulty in producing high metallic quality ultrathin Ag layers and the undesired photo-emissive metal-nitrogen complexes formation at the Ag/MN interfaces. The goal of obtaining Ag ultrathin compact layers has been reached with the aid of a proper aluminium nitride as adaptive layer. At the same time the chemical reactivity at the metal/ceramic interface (with consequent photo-emissive defects formation) has been prevented working in transition regime during AIN reactive sputtering process. In conclusion, a very simple low cost sputtering process is proposed for fabricating highly effective low-E coatings on large area glasses.
机译:已经通过溅射技术在玻璃上设计并制造了由不同的超薄层组成并且适合有效地用于低能耗建筑物的上光技术的光学选择性低发射(low-E)滤光片。已经通过半经验方法选择了溅射工艺参数,堆叠结构的层顺序和层的厚度。一旦确定了高可见光透射率和低发射率(<; 5%)的光学要求,就已经选择了合适的材料作为金属和陶瓷来制造滤光器。特别地,已经在非常简单和高效的涂料配方中交替使用了银作为高IR反射金属和氮化铝作为透明绝缘材料。然而,优化的低辐射镀层的初步光学模拟并未考虑到关键的技术方面,例如难以生产高金属质量的超薄银层以及在银/锰界面处形成不希望的发光金属-氮络合物。借助于合适的氮化铝作为适应层,已经达到了获得Ag超薄致密层的目的。同时,在AIN反应溅射过程中,防止了金属/陶瓷界面的化学反应性(随之形成光发射缺陷)。总之,提出了一种非常简单的低成本溅射工艺,用于在大面积玻璃上制造高效的低辐射涂层。

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