Iron/silicon carbide composites with tunable high-frequency magnetic and dielectric properties for potential electromagnetic wave absorption

Author:

Gao Tong,Rong Huawei,Mahmoud Khaled H.,Ruan Jiachang,El-Bahy Salah M.,Faheim Abeer A.,Li Yixing,Huang Mina,Nassan Mohamed A.,Zhao Rongzhi

Funder

Taif University Researchers Supporting Project

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Polymers and Plastics,Materials Science (miscellaneous),Ceramics and Composites

Reference60 articles.

1. Sun H, Che R, You X, Jiang Y, Yang Z, Deng J et al (2014) Cross-stacking aligned carbon-nanotube films to tune microwave absorption frequencies and increase absorption intensities. Adv Mater 26:8120–8125

2. Chen H, Lu Z, Gao Q, Zuo Y, Liu X, Guo Z et al (2021) PVDF-Ni/PE-CNTs composite foams with Co-continuous structure for electromagnetic interference shielding and photo-electro-thermal properties. Eng Sci 16:331–340

3. Wu N, Du W, Hu Q, Vupputuri S, Jiang Q (2021) Recent development in fabrication of Co nanostructures and their carbon nanocomposites for electromagnetic wave absorption. Eng Sci 13:11–23

4. Zhao B, Deng J, Zhang R, Liang L, Fan B, Bai Z, Shao G, Park C et al (2018) Recent advances on the electromagnetic wave absorption properties of Ni based materials. Eng Sci 3:5–40

5. Zhao B, Liang L, Bai Z, Gu X, Zhang R, Jiang Q et al (2021) Poly(vinylidene fluoride)/Cu@Ni anchored reduced-graphene oxide composite films with folding movement to boost microwave absorption properties. Eng Sci 14:79–86

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