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      Self‐Assembled MoS 2 Cladding for Corrosion Resistant and Frequency‐Modulated Electromagnetic Wave Absorption Materials from X‐Band to Ku‐Band

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          Abstract

          Reasonable composition design and controllable structure are effective strategies for harmonic electromagnetic wave (EMW) adsorption of multi‐component composites. On this basis, the hybrid MoS 2/CoS 2/VN multilayer structure with the triple heterogeneous interface is prepared by simple stirring hydrothermal, which can satisfy the synergistic interaction between different components and obtain excellent EMW absorption performance. Due to the presence of multiple heterogeneous interfaces, MoS 2/CoS 2/VN composites will produce strong interfacial polarization, while the defects in the sample will become the center of polarization, resulting in dipole polarization. Due to the excellent structural design of MoS 2/CoS 2/VN composite material, MoS 2/CoS 2/VN composite material not only has good conductive loss and polarization loss, but also can maintain excellent stability in simulated seawater, and enhance corrosion resistance. The MoS 2/CoS 2/VN composite with dual functions of corrosion resistant and microwave absorption achieves a minimum reflection loss (RL) of −50.48 dB and an effective absorption bandwidth of up to 5.76 GHz, covering both the X‐band and Ku‐band. Finally, this study provides a strong reference for the development of EMW absorption materials based on transition metal nitrides.

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          Lightweight Ni Foam‐Based Ultra‐Broadband Electromagnetic Wave Absorber

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            Metal organic framework (ZIF-67)-derived hollow CoS2/N-doped carbon nanotube composites for extraordinary electromagnetic wave absorption

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              Oxygen Vacancy‐Induced Dielectric Polarization Prevails in the Electromagnetic Wave‐Absorbing Mechanism for Mn‐Based MOFs‐Derived Composites

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                Author and article information

                Contributors
                Journal
                Small
                Small
                Wiley
                1613-6810
                1613-6829
                August 27 2023
                Affiliations
                [1 ] College of Science Sichuan Agricultural University Ya'an 625014 P. R. China
                [2 ] Institute of Materials for Energy and Environment, State Key Laboratory of Bio‐fibers and Eco‐textiles, College of Materials Science and Engineering Qingdao University Qingdao 442002 P. R. China
                [3 ] School of Materials Science and Engineering Hubei University of Automotive Technology Shiyan 442002 P. R. China
                [4 ] College of Chemistry and Chemical Engineering Qingdao University Qingdao 266071 P. R. China
                [5 ] Key Laboratory of Engineering Dielectrics and Its Application Ministry of Education School of Electrical & Electronic Engineering Harbin University of Science and Technology Harbin 150080 P. R. China
                Article
                10.1002/smll.202304932
                773b0fa5-e50d-42a9-8bdf-deea81af6d88
                © 2023

                http://onlinelibrary.wiley.com/termsAndConditions#vor

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