Researchers from Beijing University of Technology, Harbin University and Peking University have developed a graphene-based metasurface designed for electromagnetic wave (EMW) absorption in high-speed aerospace applications.
Modern aircraft require materials that combine low density, flexibility, high-temperature stability, and effective EMW attenuation. To address these requirements, the research team applied a subtractive laser patterning technique to graphene@silica fabric (G@SF) synthesized via chemical vapor deposition.
Researchers from Beijing University of Technology, Harbin University and Peking University have developed a graphene-based metasurface designed for electromagnetic wave (EMW) absorption in high-speed aerospace applications.Modern aircraft require materials that combine low density, flexibility, high-temperature stability, and effective EMW attenuation. To address these requirements, the research team applied a subtractive laser patterning technique to graphene@silica fabric (G@SF) synthesized via chemical vapor deposition.
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