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Xifang Chen

Researcher at Southwest University of Science and Technology

Publications -  55
Citations -  3548

Xifang Chen is an academic researcher from Southwest University of Science and Technology. The author has contributed to research in topics: Metamaterial & Absorption (electromagnetic radiation). The author has an hindex of 37, co-authored 54 publications receiving 2427 citations. Previous affiliations of Xifang Chen include Southeast University.

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Ultra-broadband and wide-angle perfect solar absorber based on TiN nanodisk and Ti thin film structure

TL;DR: In this article, the authors designed an efficient, ultra-broadband perfect solar absorber to have as long absorption bands in this range as possible to help alleviate the energy problem and showed that the absorption bandwidth with absorption greater than 90% is greater than 2100nm.
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Broadband solar energy absorber based on monolayer molybdenum disulfide using tungsten elliptical arrays

TL;DR: In this paper, the authors proposed a new type of broadband solar energy absorber based on monolayer molybdenum disulfide (MoS2) and tungsten elliptical arrays.
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Ultra-wideband solar absorber based on refractory titanium metal

TL;DR: In this article, a titan-based resonator was proposed to achieve near-perfect wide spectrum absorption of solar radiation using surface plasmon resonance, up to 1759nm in the range of absorption over 90% in the absorption spectrum studied.
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High Quality Factor, High Sensitivity Metamaterial Graphene-Perfect Absorber Based on Critical Coupling Theory and Impedance Matching.

TL;DR: Through the critical coupling effect and impedance matching, a perfect single-band absorption of the monolayer graphene is studied and high quality factor is obtained which has an absorbance close to 100% in the near infrared region.
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Broadband polarization-insensitive and wide-angle solar energy absorber based on tungsten ring-disc array

TL;DR: A novel kind of broadband solar energy absorber based on tungsten (W) to achieve broadband absorption of solar energy and has excellent polarization independence and can be used under incident angles from 0° to 60°.