Magnetite-Incorporated 1D Carbon Nanostructure Hybrids for Electromagnetic Interference Shielding
Kaidar B. Imash A. Smagulova G. Keneshbekova A. Kazhdanbekov R. Yensep E. Akalim D. Lesbayev A.
August 2024Multidisciplinary Digital Publishing Institute (MDPI)
Nanomaterials
2024#14Issue 15
The increasing reliance on electronic technologies has elevated the urgency of effective electromagnetic interference (EMI) shielding materials. This review explores the development and potential of magnetite-incorporated one-dimensional (1D) carbon nanostructure hybrids, focusing on their unique properties and synthesis methods. By combining magnetite’s magnetic properties with the electrical conductivity and mechanical strength of carbon nanostructures such as carbon nanotubes (CNTs) and carbon fibers (CFs), these hybrids offer superior EMI shielding performance. Various synthesis techniques, including solvothermal synthesis, in situ growth, and electrostatic self-assembly, are discussed in detail, highlighting their impact on the structure and properties of the resulting composites. This review also addresses the challenges in achieving homogeneous dispersion of nanofillers and the environmental and economic considerations of large-scale production. The hybrid materials’ multifunctionality, including enhanced mechanical strength, thermal stability, and environmental resistance, underscores their suitability for advanced applications in aerospace, electronics, and environmental protection. Future research directions focus on optimizing synthesis processes and exploring new hybrid configurations to further improve electromagnetic properties and practical applicability.
carbon fibers , carbon nanotubes , electromagnetic interference shielding , environmental protection , hybrid composites , magnetite
Text of the article Перейти на текст статьи
Department of “General Physics”, Intistute of Energy and Mechanical Engineering Named after A. Burkitbayev, Satbayev University, 22a Satpaev Str., Almaty, 050013, Kazakhstan
Institute of Combustion Problems, 172 Bogenbay Batyr Str., Almaty, 050012, Kazakhstan
Faculty of Chemistry and Chemical Technology, Al Farabi Kazakh National University, 71 al-Farabi Ave., Almaty, 050040, Kazakhstan
Department of “General Physics”
Institute of Combustion Problems
Faculty of Chemistry and Chemical Technology
10 лет помогаем публиковать статьи Международный издатель
Книга Публикация научной статьи Волощук 2026 Book Publication of a scientific article 2026