Annealing enhanced optical performances of nano-multilayered TiAlN/ AlCrSiN-based solar selective absorber

Qiao Wu, Zhenyuan Wang, Jingshu Xiao, Hu Zhuang, Ting Huang, Feng Zhu,Jixue Cao, Qi Yi,Kang Liu,Huidong Liu

SURFACE & COATINGS TECHNOLOGY(2023)

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Abstract
Solar selective absorber is an important component to improve the solar thermal conversion efficiency of next-generation concentrated solar power with working temperature higher than 700 degrees C. However, the selective absorbers with thermal stability up to 700 degrees C are still lacking. Here, we designed a solar selective absorber based on nano-multilayered TiAlN/AlCrSiN films via thermal annealing, which could induce spinodal decomposition in TiAlN layer and form dual phase structure of Ti-rich and Al-rich cubic-TiAlN, to enhance the optical perfor-mances and thermal stability of the absorber. The obtained absorber after annealed at 900 degrees C exhibited a solar absorptance of 0.923 and a thermal emittance of 0.192, as well as small variation (0.935/0.232) after annealing at 700 degrees C for 100 h. However, after annealing the absorber at temperatures higher than 1000 degrees C, the N-loss induced the formation of metal CrSi2 phase and obviously decreased the absorption in near-infrared region. These results indicated the potential of the implement of spinodal decomposition to construct solar selective absorbers with high performances.
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Key words
Nano-multilayer,Spinodal decomposition,Solar selective absorber,Thermal stability
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