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Compact multilayer selective absorbers based on amorphous carbon for solar-thermal conversion
2024-12
发表期刊SOLAR ENERGY MATERIALS AND SOLAR CELLS (IF:6.3[JCR-2023],6.0[5-Year])
ISSN0927-0248
EISSN1879-3398
卷号278
发表状态已发表
DOI10.1016/j.solmat.2024.113175
摘要

In addressing the energy crisis and climate change, environmentally sustainable materials and structures with heightened absorption and enhanced photothermal conversion efficiency are urgently demanded. In this study, a series of ultrabroadband, omnidirectional, and near-perfect solar radiation absorbers based on amorphous carbon (a-C) were fabricated by magnetron sputtering. These absorbers, featuring 4, 6, and 8-layer compact multilayer thin film structures, exhibited measured absorption of 96.8 %, 96.5 %, and 96.6 % in the range of 300–2500 nm, respectively. The high absorption efficiency delves into the synergistic effects of intrinsic absorption of a-C and enhanced absorption through thin film interference. Through microstructure analysis, the reduced absorption compared to design originates from the optical thickness mismatch caused by the unstable growth rate of a-C. In addition, the absorbers show very slight variations in absorption within 40° and maintain a high absorption of more than 80 % in the incident angle of 60°. For samples with different air annealing temperatures from 100 to 250 °C, the microstructure, morphology, and optical properties were systematically investigated. The appearance of oxygen channels due to surface defects or voids leads to the oxidation reaction of the diffused Ti atoms at high temperature. Notably, the proposed absorber can be fabricated by a lithography-free method, paving a way for large-area application of a-C. © 2024

关键词Incident solar radiation Optical multilayers Solar absorbers Admittance loci Energy crisis Multilayer selective absorber Optical admittance Optical admittance locus Photothermal conversion efficiencies Solar thermal conversion Sustainable materials Sustainable structure Ultra-broadband
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收录类别EI ; SCI
语种英语
资助项目Youth Innovation Promotion Associa-tion, CAS[2020244]
WOS研究方向Energy & Fuels ; Materials Science ; Physics
WOS类目Energy & Fuels ; Materials Science, Multidisciplinary ; Physics, Applied
WOS记录号WOS:001329697800001
出版者Elsevier B.V.
EI入藏号20244017140385
EI分类号1302.1.1 ; 208.2 ; 741.3 Optical Devices and Systems
原始文献类型Journal article (JA)
文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/430475
专题物质科学与技术学院
物质科学与技术学院_特聘教授组_刘定权组
物质科学与技术学院_硕士生
物质科学与技术学院_博士生
通讯作者Liu, Dingquan; Luo, Haihan
作者单位
1.Shanghai Key Laboratory of Optical Coatings and Spectral Modulation, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai, 200083, China
2.School of Physical Science and Technology, ShanghaiTech University, Shanghai, 200031, China
3.School of Optoelectronics, University of the Chinese Academy of Sciences, Beijing; 100049, China
第一作者单位物质科学与技术学院
通讯作者单位物质科学与技术学院
推荐引用方式
GB/T 7714
Su, Junli,Liu, Dingquan,Chen, Gang,et al. Compact multilayer selective absorbers based on amorphous carbon for solar-thermal conversion[J]. SOLAR ENERGY MATERIALS AND SOLAR CELLS,2024,278.
APA Su, Junli.,Liu, Dingquan.,Chen, Gang.,Ma, Chong.,Zhou, Sheng.,...&Luo, Haihan.(2024).Compact multilayer selective absorbers based on amorphous carbon for solar-thermal conversion.SOLAR ENERGY MATERIALS AND SOLAR CELLS,278.
MLA Su, Junli,et al."Compact multilayer selective absorbers based on amorphous carbon for solar-thermal conversion".SOLAR ENERGY MATERIALS AND SOLAR CELLS 278(2024).
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