Hai Xie

ORCID: 0000-0002-8211-6677
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Research Areas
  • Electromagnetic wave absorption materials
  • Crystallization and Solubility Studies
  • X-ray Diffraction in Crystallography
  • Advanced Antenna and Metasurface Technologies
  • Metallurgy and Material Forming
  • High Temperature Alloys and Creep
  • Metamaterials and Metasurfaces Applications
  • Fusion materials and technologies
  • Crystallography and molecular interactions
  • Microstructure and Mechanical Properties of Steels
  • Aeolian processes and effects
  • Silicone and Siloxane Chemistry
  • Fatigue and fracture mechanics
  • Peatlands and Wetlands Ecology
  • Nuclear Materials and Properties
  • Advanced Sensor and Energy Harvesting Materials
  • Advanced Welding Techniques Analysis
  • Soil Carbon and Nitrogen Dynamics
  • Nuclear reactor physics and engineering
  • Electromagnetic Compatibility and Noise Suppression
  • Dielectric materials and actuators

Chinese Academy of Sciences
2023-2024

University of Chinese Academy of Sciences
2024

Lanzhou Institute of Chemical Physics
2023-2024

Mianyang Normal University
2018

With the coming era of artificial intelligence (AI) dominated by high-tech electronics, developing high-performance microwave absorption materials (MAMs) is imperative to solve problem increasing electromagnetic inference and pollution. Herein, a metal-organic framework (MOF)-derived CoNi bimetallic alloy (CoNi/C) with an irregular rod-like structure prepared thermal reduction method. Introducing facilitates balance between conduction loss polarization forms good impedance matching, leading...

10.1039/d3ra08896k article EN cc-by-nc RSC Advances 2024-01-01

Metal-organic frameworks (MOFs)-derived microwave absorbers with tunable components and microstructures show great potential in absorption. Herein, we report a facile thermal reduction approach for synthesizing CoNi alloy/reduced graphene oxide (CoNi/rGO) composites from bimetallic CoNi-MOFs. By tuning the ratio of (GO) precursors, resulting CoNi/rGO-2 composite demonstrates optimal absorption performance minimum reflection loss (RLmin) −66.2 dB at 7.6 GHz C band. Moreover, 50 wt% filler...

10.3390/coatings14020228 article EN Coatings 2024-02-15

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10.2139/ssrn.4687525 preprint EN 2024-01-01

With the emergence of 5G communication technology and Internet age, proliferation equipment has resulted in an unprecedented surge electromagnetic interference radiation pollution. High frequency waves (EMW) pose a threat to human health, disrupt signal propagation, impact longevity space equipment. While traditional metal shielding materials exhibit strong performance this regard, their high density, susceptibility corrosion, elevated cost regulatory challenges limit widespread use...

10.2139/ssrn.4600891 preprint EN 2023-01-01
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