A titanium-based hollow-cube metamaterial for efficient broadband solar absorption
Zhuocheng Xue, Shubo Cheng, Huafeng Zhang, Jun Zhu, Zao Yi
Yangtze University Guangxi Normal University Southwest University of Science and Technology Jishou University
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摘要与影响
dielectric for the intermediate layer, and a top resonator composed of a hollow square prism with corner notches. As demonstrated by finite difference time domain simulations, this structure achieves an average absorption rate that exceeds 90% across the 280-3138 nm wavelength range, exhibiting a solar-weighted absorption efficiency of 92.8%. It has been demonstrated to exhibit exceptional photothermal conversion efficiency and notable robustness against variations in polarization and incident angle. Theoretical analysis further explores the physical mechanisms underlying its broadband absorption. A comparison of this absorber with existing designs reveals its superior thermal stability and structural simplicity. This makes it suitable for solar energy harvesting, thermal radiation control, and integrated optoelectronic devices. This work presents a novel approach for developing refractory metal-based metamaterial absorbers and holds significant implications for advancing research on efficient solar energy utilization.
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工程Thermal Radiation and Cooling Technologies
Metamaterials and Metasurfaces Applications · Electromagnetic wave absorption materials
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