TY - JOUR
T1 - Multi-polarization design of silica-graphene for enhancing microwave absorption performance in X-band
AU - Jiao, Yameng
AU - Song, Qiang
AU - Han, Liyuan
AU - Meng, Jiachen
AU - Wang, Xiaoshuang
AU - Li, Hejun
N1 - Publisher Copyright:
© 2024
PY - 2025/1/1
Y1 - 2025/1/1
N2 - Obtaining a broadband microwave absorption (MA) response for pure graphene is always a challenge relying solely on itself without complicated modification or assistance with magnetic materials to neutralize its poor impedance. In this work, defective graphene is in-situ grown on silica (SiO2) nanospheres and abundant graphene/SiO2 (SG) micro-interfaces are formulated simultaneously. To further improve the lossy capacity and impedance, double-layer SG with different preparation temperature (DL) are prepared with an additional macro-interface. Discussion is focused on the effect of multi-polarization processes. Compared with the single-interface SG, DL has a more obvious frequency-dispersion effect which is benefit to broadband absorb, and the electromagnetic wave (EMW) loss capability of DL is also improved due to the enhanced interface and dipole polarizations. When the thickness of DL is 2.5 mm, its effective absorption bandwidth reaches 4.2 GHz, covering the whole X-band. This work provides a useful strategy for the expansion of the MA bandwidth.
AB - Obtaining a broadband microwave absorption (MA) response for pure graphene is always a challenge relying solely on itself without complicated modification or assistance with magnetic materials to neutralize its poor impedance. In this work, defective graphene is in-situ grown on silica (SiO2) nanospheres and abundant graphene/SiO2 (SG) micro-interfaces are formulated simultaneously. To further improve the lossy capacity and impedance, double-layer SG with different preparation temperature (DL) are prepared with an additional macro-interface. Discussion is focused on the effect of multi-polarization processes. Compared with the single-interface SG, DL has a more obvious frequency-dispersion effect which is benefit to broadband absorb, and the electromagnetic wave (EMW) loss capability of DL is also improved due to the enhanced interface and dipole polarizations. When the thickness of DL is 2.5 mm, its effective absorption bandwidth reaches 4.2 GHz, covering the whole X-band. This work provides a useful strategy for the expansion of the MA bandwidth.
KW - Broadband absorption
KW - Frequency-dispersion effect
KW - Graphene
KW - Interface polarization
KW - Microwave absorption
UR - http://www.scopus.com/inward/record.url?scp=85214005054&partnerID=8YFLogxK
U2 - 10.1016/j.surfin.2024.105733
DO - 10.1016/j.surfin.2024.105733
M3 - 文章
AN - SCOPUS:85214005054
SN - 2468-0230
VL - 56
JO - Surfaces and Interfaces
JF - Surfaces and Interfaces
M1 - 105733
ER -