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Structure, optical simulation and thermal stability of the HfB2-based high-temperature solar selective absorbing coatings
Department环境材料与生态化学研究发展中心
Xiao-Li Qiu(邱晓莉)1; Xiang-Hu Gao(高祥虎)1,2; Cheng-Yu He(何成玉)1; Bao-Hui Chen(陈宝辉)3; Gang Liu(刘刚)1,2
The second department材料与分析分析
2019-09-19
Source PublicationRSC Advances
Issue9Pages:29726–29733
Abstract

Transition metal borides are a kind of potential materials for high-temperature solar thermal applications. In this work, a novel SS/HfB2/Al2O3 tandem absorber was prepared, which exhibited high solar spectrum selectivity (a/3) of 0.920/0.109. The optical constants of the coating were obtained using spectroscopic ellipsometry, and the dispersion model of the HfB2 layer was modeled with the Tauc–Lorentz dispersion formula. In addition, the reflectance spectrum simulated by the CODE software corroborated well with the experimental results. The thermal stability test indicated that the HfB2/Al2O3 solar absorber coating was thermally stable in vacuum at 600 C for 2 h. When extending the annealing time to 100 h, the coating could maintain high spectral selectivity after aging at 500 C irrespective of whether in air or vacuum. All these results indicate that the coating has good solar selectivity and is a promising candidate for high-temperature solar thermal applications
 

MOST Discipline Catalogue工学
DOI10.1039/c9ra05014k
Indexed BySCI
If3.049
Language英语
compositor第一作者单位
Citation statistics
Cited Times:19[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/25816
Collection环境材料与生态化学研究发展中心
Corresponding AuthorXiao-Li Qiu(邱晓莉); Gang Liu(刘刚)
Affiliation1.Research and Development Center for Eco-Chemistry and Eco-Materials, State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China
2.Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
3.State Key Laboratory of Disaster Prevention & Reduction for Power Grid Transmission and Distribution Equipment, Changsha 410007, China
Recommended Citation
GB/T 7714
Xiao-Li Qiu,Xiang-Hu Gao,Cheng-Yu He,et al. Structure, optical simulation and thermal stability of the HfB2-based high-temperature solar selective absorbing coatings[J]. RSC Advances,2019(9):29726–29733.
APA Xiao-Li Qiu,Xiang-Hu Gao,Cheng-Yu He,Bao-Hui Chen,&Gang Liu.(2019).Structure, optical simulation and thermal stability of the HfB2-based high-temperature solar selective absorbing coatings.RSC Advances(9),29726–29733.
MLA Xiao-Li Qiu,et al."Structure, optical simulation and thermal stability of the HfB2-based high-temperature solar selective absorbing coatings".RSC Advances .9(2019):29726–29733.
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