TY - JOUR
T1 - Fabrication of carbon/Co composites from waste tires for superior electromagnetic wave absorption
AU - Yang, Yuchen
AU - Zhou, Ziyi
AU - Wen, Bo
AU - Xiao, Jiyuan
AU - Li, Lili
AU - Ji, Shuting
AU - Yang, Guorui
AU - Ding, Shujiang
N1 - Publisher Copyright:
© 2025
PY - 2025/4
Y1 - 2025/4
N2 - Pyrolyzed carbon black is a promising carbon material with excellent potential for electromagnetic waves absorption, making it suitable for mitigating electromagnetic pollution. It can be derived from various organic sources. In this study, waste tires, which are difficult to dispose of, were used as the carbon source to produce pyrolyzed carbon black. A porous structure was created using KOH, and cobalt was then loaded onto this structure to form a composite material with both dielectric and magnetic loss mechanisms. With a cobalt content of 15 wt% and a thickness of 1.9 mm, the composite achieved a reflection loss (RL) value of -66.1 dB and an effective bandwidth of 5.12 GHz, demonstrating significant wave absorption performance. This work effectively addresses both electromagnetic pollution and the disposal of waste tires, providing a large-scale, low-cost source of materials for wave absorption applications.
AB - Pyrolyzed carbon black is a promising carbon material with excellent potential for electromagnetic waves absorption, making it suitable for mitigating electromagnetic pollution. It can be derived from various organic sources. In this study, waste tires, which are difficult to dispose of, were used as the carbon source to produce pyrolyzed carbon black. A porous structure was created using KOH, and cobalt was then loaded onto this structure to form a composite material with both dielectric and magnetic loss mechanisms. With a cobalt content of 15 wt% and a thickness of 1.9 mm, the composite achieved a reflection loss (RL) value of -66.1 dB and an effective bandwidth of 5.12 GHz, demonstrating significant wave absorption performance. This work effectively addresses both electromagnetic pollution and the disposal of waste tires, providing a large-scale, low-cost source of materials for wave absorption applications.
KW - Electromagnetic waves absorption
KW - Pyrolyzed carbon black
KW - Wasted tires
UR - https://www.scopus.com/pages/publications/85217825207
U2 - 10.1016/j.apmt.2025.102645
DO - 10.1016/j.apmt.2025.102645
M3 - 文章
AN - SCOPUS:85217825207
SN - 2352-9407
VL - 43
JO - Applied Materials Today
JF - Applied Materials Today
M1 - 102645
ER -