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Optical and Chromaticity Properties of Metal-Dielectric Composite-Based Multilayer Thin-Film Structures Prepared by RF Magnetron Sputtering

机译:由RF磁控溅射制备的金属 - 介电复合材料的多层薄膜结构的光学和色度性能

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Coated glass products, and especially the low-emissivity coatings, have become a common building material used in modern architectural projects. More recently, these material systems became common in specialized glazing systems featuring solar energy harvesting. Apart from achieving the stability of optical parameters in multilayer coatings, it is also important to have improved control over the design of visual color properties of the coated glass. We prepare metal-dielectric composite (MDC)-based multilayer thin-film structures using the radio frequency (RF)-magnetron sputtering deposition and report on their optical and chromaticity properties in comparison with these obtained using pure metal-based Dielectric/Metal/Dielectric (DMD) trilayer structures of similar compositions. Experimentally achieved Hunter L, a, b values of MDC-based multilayer building blocks of coatings provide a new outlook on the engineering of future-generation optical coatings with better color consistency and developing approaches to broaden the range of achievable color coordinates and better environmental stability.
机译:涂层玻璃制品,特别是低发射率涂料,已成为现代建筑项目中使用的共同建筑材料。最近,这些材料系统在具有太阳能收集的专用玻璃系统中变得很常见。除了实现多层涂层中光学参数的稳定性之外,还有改进对涂层玻璃的视觉色彩性质的设计进行改进的控制。使用射频(RF)-Magnetron溅射沉积和报告它们的光学和色度特性,制备金属介质复合物(MDC)的多层薄膜结构,并与使用纯金属基电介质/金属/金属/介电获得(DMD)类似组合物的三层结构。通过实验达到的猎人L,A,B的基于MDC的多层建筑块的B值为未来的光学涂层工程提供了新的展望,具有更好的色彩稠度和开发方法,以扩大可实现的颜色坐标和更好的环境稳定性。

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