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Spectrally Selective Solar Absorber Coating of W/WAlSiN/SiON/SiO2 with Enhanced Absorption through Gradation of Optical Constants: Validation by Simulation

机译:通过光学常数渐变的光谱选择性太阳能吸收剂涂层具有增强的吸收:通过模拟验证

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The properties of spectrally selective solar absorber coatings can be fine-tuned by varying the thickness and composition of the individual layers. We have deposited individual layers of WAlSiN, SiON, and SiO2 of thicknesses ~940, 445, and 400 nm, respectively, for measuring the refractive indices and extinction coefficients using spectroscopic ellipsometer measurements. Appropriate dispersion models were used for curve fitting of Ψ and Δ for individual and multilayer stacks in obtaining the optical constants. The W/WAlSiN/SiON/SiO2 solar absorber exhibits a high solar absorptance of 0.955 and low thermal emissivity of 0.10. The refractive indices and extinction coefficients of different layers in the multilayer stack decrease from the substrate to the top anti-reflection layer. The graded refractive index of the individual layers in the multilayer stack enhances the solar absorption. In the tandem absorber, WAlSiN is the main absorbing layer, whereas SiON and SiO2 act as anti-reflection layers. A commercial simulation tool was used to generate the theoretical reflectance spectra using the optical constants are in well accordance with the experimental data. We have attempted to understand the gradation in refractive indices of the multilayer stack and the physics behind it by computational simulation method in explaining the achieved optical properties. In brief, the novelty of the present work is in designing the solar absorber coating based on computational simulation and ellipsometry measurements of individual layers and multilayer stack in achieving a high solar selectivity. The superior optical properties of W/WAlSiN/SiON/SiO2 makes it a potential candidate for spectrally selective solar absorber coatings.
机译:通过改变各个层的厚度和组成,可以微妙地进行光谱选择性太阳能吸收涂层的性质。我们已经分别沉积了厚度〜940,445和400nm的单个沃尔辛,SiO期和SiO2,以测量使用光谱椭圆计测量的折射率和消光系数。在获得光学常数时,适用于用于个体和多层堆叠的ψ和δ的曲线拟合。 W / WALSIN / SION / SIO2太阳能吸收器具有0.955的高太阳能吸收率,低热发射率为0.10。多层堆叠中不同层的折射率和消光系数从衬底减小到顶部抗反射层。多层叠层中各个层的分级折射率增强了太阳能吸收。在串联吸收剂中,沃尔汀是主吸收层,而Sion和SiO2充当抗反射层。商业仿真工具用于生成使用光学常数的理论反射光谱,这与实验数据均匀。我们试图通过计算仿真方法了解多层堆叠的折射率和物理学的渐变,以说明实现的光学性质。简而言之,本作本作的新颖性是在实现高太阳能选择性时,基于各个层和多层堆叠的计算模拟和椭圆测量测量来设计太阳能吸收件。 W / WALSIN / SION / SIO2的上光学性能使其成为光谱选择性太阳能吸收涂层的潜在候选者。

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