Showing 1 - 20 results of 483 for search 'interference composition', query time: 0.09s Refine Results
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    Novel Cellulosic Fiber Composites with Integrated Multi-Band Electromagnetic Interference Shielding and Energy Storage Functionalities by Xuewen Han, Cheng Hao, Yukang Peng, Han Yu, Tao Zhang, Haonan Zhang, Kaiwen Chen, Heyu Chen, Zhenxing Wang, Ning Yan, Junwen Pu

    Published 2025-01-01
    “…Highlights A mild 2,2,6,6-tetramethylpiperidine-1-oxide mediated modification system was applied to improve the reactivity and introduce porous structure of cellulose fiber skeleton. Composite exhibited highly efficient electromagnetic shielding interference performance (> 99.99%) over multi-band. …”
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    Lightweight self-cleaning trans-polyisoprene/multiwalled carbon nanotubes open-cell composite material: Its electromagnetic shielding performance by Y. Song, A. D. Phule, D. Wang, L. Ma, Z. X. Zhang

    Published 2021-09-01
    “…On this basis, the preparation process has been improved, and an open cell superhydrophobic composite material with good electromagnetic interference shielding effectiveness (EMI SE) and self-cleaning functions has been prepared. …”
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    Ag anchored mesoporous carbon hollow sphere in Cellulose nanofibers/MXene composite films for high-performance electromagnetic interference shielding by Wenting Tao, Wenqin Shao, Meng Ma, Si Chen, Yanqin Shi, Huiwen He, Yulu Zhu, Xu Wang

    Published 2025-02-01
    “…In this paper, Ag nanoparticles loaded mesoporous carbon hollow spheres (MCHS@Ag) were synthesized by chemical reduction method, and cellulose nanofibers (CNF)/MXene/MCHS@Ag homogeneous composites were prepared. The total EM interference shielding efficiency (SET) of CNF/MXene/MCHS@Ag composite film was 32.83 ​dB (at 12.4 ​GHz), and the absorption effectiveness (SEA) was improved to 26.6 ​dB, which was 63.1% and 195.5% higher than that of CNF/MXene/MCHS composite film. …”
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    Hong-Ou-Mandel quantum effect on “polymer - multiwall cnt” composites by M. T. Kartel, L. A. Karachevtseva, Yu. I. Sementsov, O. O. Lytvynenko

    Published 2022-05-01
    Subjects: “…polymer-multiwall carbon nanotube composites…”
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