Original Article
  • Effect of Calcination Temperature on Electromagnetic Wave Absorption Properties of M-type Ferrite Composite
  • Seong Jun Cheon*,**, Jae Ryung Choi*, Sang Bok Lee*, Je In Lee**, Horim Lee*†

  • * Department of Functional Composite, Korea Institute of Materials Science
    ** School of Materials Science and Engineering, Pusan National University

  • 하소온도가 M형 페라이트 복합재의 전자파 흡수 특성에 미치는 영향
  • 천성준*,**· 최재령*· 이상복*· 이제인**· 이호림*†

  • This article is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

References
  • 1. Shahzad, F., Alhabeb, M., Hatter, C.B., Anasori, B., Man Hong, S., Koo, C.M., and Gogotsi, Y., “Electromagnetic Interference Shielding with 2D Transition Metal Carbides (MXenes),” Science, Vol. 353, No. 6304, 2016, pp. 1137-1140.
  •  
  • 2. Wu, N., Hu, Q., Wei, R., Mai, X., Naik, N., Pan, D., Guo, Z., and Shi, Z., “Review on the Electromagnetic Interference Shielding Properties of Carbon Based Materials and Their Novel Composites: Recent Progress, Challenges and Prospects,” Carbon, Vol. 176, 2021, pp. 88-105.
  •  
  • 3. Yang, R., Zhou, Y., Ren, Y., Xu, D., Guan, L., Guo, X., Zhang, R., and Zhao, B., “Promising PVDF-CNT-Graphene-NiCo Chains Composite Films with Excellent Electromagnetic Interference Shielding Performance,” Journal of Alloys and Compounds, Vol. 908, 2022, pp. 164538.
  •  
  • 4. Choi, K.-S., Sim, D., Choi, W., Shin, J.-H., and Nam, Y.-W., “Ultra-high Temperature EM Wave Absorption Behavior for Ceramic/sendust-aluminosilicate Composite in X-band,” Composites Research, Vol. 35, No. 3, 2022, pp. 201-215.
  •  
  • 5. Park, B., Ryu, S.H., Kwon, S.J., Kim, S., and Lee, S.B., “A Conductive-grid Based EMI Shielding Composite Film with a High Heat Dissipation Characteristic,” Composites Research, Vol. 35, No. 3, 2022, pp. 175-181.
  •  
  • 6. Lee, K., Lee, J., Jung, B.M., Lee, S.B., and Kim, T., “Dispersion Characteristics of Magnetic Particle/graphene Hybrid Based on Dispersant and Electromagnetic Interference Shielding Characteristics of Composite,” Composite Research, Vol. 31, No. 3, 2018, pp. 111-116.
  •  
  • 7. Wu, Y., Huang, K., Weng, X., Wang, R., Du, P., Liu, J., Lin, S., Huang, K., Yang, H., and Lei, M., “PVB Coating Efficiently Improves the High Stability of EMI Shielding Fabric with Cu/Ni,” Advanced Composites and Hybrid Materials, Vol. 5, No. 1, 2022, pp. 71-82.
  •  
  • 8. Kim, D., Lee, Y.J., and Ahn, K.H., “Interconnected Network of Ag and Cu in Bioplastics for Ultrahigh Electromagnetic Interference Shielding Efficiency with High Thermal Conductivity,” Composites Communications, Vol. 30, 2022, pp. 101093.
  •  
  • 9. Kumar, R., Sahoo, S., Joanni, E., Singh, R.K., Tan, W.K., Kar, K.K., and Matsuda, A., “Recent Progress on Carbon-based Composite Materials for Microwave Electromagnetic Interference Shielding,” Carbon, Vol. 177, 2021, pp. 304-331.
  •  
  • 10. Song, P., Liu, B., Liang, C., Ruan, K., Qiu, H., Ma, Z., Guo, Y., and Gu, J., “Lightweight, Flexible Cellulose-Derived Carbon Aerogel@Reduced Graphene Oxide/PDMS Composites with Outstanding EMI Shielding Performances and Excellent Thermal Conductivities,” Nano-Micro Letters, Vol. 13, No. 1, 2021, pp. 91.
  •  
  • 11. Cheng, H., Pan, Y., Chen, Q., Che, R., Zheng, G., Liu, C., Shen, C., and Liu, X., “Ultrathin Flexible Poly(vinylidene fluoride)/MXene/silver Nanowire Film with Outstanding Specific EMI Shielding and High Heat Dissipation,” Advanced Composites and Hybrid Materials, Vol. 4, No. 3, 2021, pp. 505-513.
  •  
  • 12. Yin, J., Zhang, J., Zhang, S., Liu, C., Yu, X., Chen, L., Song, Y., Han, S., Xi, M., and Zhang, C., “Flexible 3D Porous Graphene Film Decorated with Nickel Nanoparticles for Absorption-dominated Electromagnetic Interference Shielding,” Chemical Engineering Journal, Vol. 421, 2021, pp. 129763
  •  
  • 13. Ryu, S.H., Han, Y.K., Kwon, S.J., Kim, T., Jung, B.M., Lee, S.-B., and Park, B., “Absorption-dominant, Low Reflection EMI Shielding Materials with Integrated Metal Mesh/TPU/CIP Composite,” Chemical Engineering Journal, Vol. 428, 2022, pp. 131167.
  •  
  • 14. Zong, Z., Ren, P., Guo, Z., Wang, J., Chen, Z., Jin, Y., and Ren, F., “Three-dimensional Macroporous Hybrid Carbon Aerogel with Heterogeneous Structure Derived from MXene/cellulose Aerogel for Absorption-dominant Electromagnetic Interference Shielding and Excellent Thermal Insulation Performance,” Journal of Colloid and Interface Science, Vol. 619, 2022, pp. 96-105.
  •  
  • 15. Suthar, M., and Roy, P.K., “Structural, Electromagnetic, and Ku-band Absorption Characterization of La-Mg Substituted Y-type Barium Hexaferrite for EMI Shielding Application,” Materials Science and Engineering: B, Vol. 283, 2022, pp. 115801.
  •  
  • 16. Wang, B., Wu, Q., Fu, Y., and Liu, T., “A Review on Carbon/magnetic Metal Composites for Microwave Absorption,” Journal of Materials Science & Technology, Vol. 86, 2021, pp. 91-109.
  •  
  • 17. Zahid, M., Siddique, S., Anum, R., Shakir, M.F., Nawab, Y., and Rehan, Z.A., “M-Type Barium Hexaferrite-Based Nanocomposites for EMI Shielding Application: A Review,” Journal of Superconductivity and Novel Magnetism, Vol. 34, No. 4, 2021, pp. 1019-1045.
  •  
  • 18. He, F., Zhoa, W., Cao, L., Liu, Z., Sun, L., Zhang, Z., Zhang, H., and Qi, T., “The Ordered Mesoporous Barium Ferrite Compounded with Nitrogen-doped Reduced Graphene Oxide for Microwave Absorption Materials,” Small, Vol. 19, No. 32, 2023, pp. 2205644.
  •  
  • 19. Lim, E., Kim, H., and Kang, Y.M., “Control of Electromagnetic Wave Absorption Properties in La-Co-Ti Substituted M-type Hexaferrite-epoxy Composite” Journal of Magnetism and Magnetic Materials, Vol. 517, No. 1, 2021, pp. 167397.
  •  
  • 20. Ramezanzaeh, G., Chasemi, A., Mozaffarinia, R., and Alizadeh, A., “Electromagnetic Wave Reflection Loss and Magnetic Properties of M-type SrFe12-x(Mn0.5Sn0.5)xO19 Hexagonal Ferrite Nanoparticle in the Ku Microwave Band,” Ceramics International, Vol. 43, No. 13, 2017, pp. 10231.
  •  
  • 21. Wang, X., Wang, B., Wei, S., Wang, Y., and Liang, Y., “Effect of Sintering Temperature on the Microstructure, Magnetics, and Microwave Absorption Properties of M-type Barium Ferrite Nanoparticles Prepared by Sol-gel Method,” Journal of Materials Science:Materials in Electronics, Vol. 34, 2023, pp. 1045.
  •  
  • 22. Pullar, R.C., “Hexagonal Ferrites: A Review of the Synthesis, Properties and Applications of Hexaferrite Ceramics,” Progress in Materials Science, Vol. 57, No. 7, 2012, pp. 1191-1334.
  •  
  • 23. Gorbachev, E.A., Trusov, L.A., Sleptsova, A.E., Kozlyakova, E.S., Alyabyeva, L.N., Yegiyan, S.R., Prokhorov, A.S., Lebedev, V.A., Roslyakov, I.V., and Vasiliev, A.V., “Hexaferrite Materials Displaying Ultra-high Coercivity and Sub-terahertz Ferromagnetic Resonance Frequencies,” Materials Today, Vol. 32, 2020, pp. 13-18.
  •  

This Article

Correspondence to

  • Horim Lee
  • Department of Functional Composite, Korea Institute of Materials Science

  • E-mail: horimlee@kims.re.kr