TY - JOUR
T1 - One-dimensional Ag@NC-Co@NC composites with multiphase core-shell hetero-interfaces for boosting microwave absorption
AU - Sun, Mengxiao
AU - Xiong, Ziming
AU - Zhang, Zhongwei
AU - Chen, Chaochan
AU - Qin, Long
AU - Wang, Derong
AU - Wu, Fan
AU - Liu, Panbo
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/9/29
Y1 - 2022/9/29
N2 - Core-shell structural absorbers have attracted arousing attention in boosting microwave absorption in theory, however, it still remains great challenges to construct multiphase core-shell hetero-interfaces to manipulate interfacial polarization and final absorption performance. Herein, we propose a competition optimization strategy to fabricate one-dimensional (1D) Ag@NC-Co@NC composites, in which fractured Ag particles are encapsulated into 1D N-doped carbon networks and magnetic Co nanoparticles are wrapped by N-doped carbon shells, yielding to multiphase core-shell hetero-interfaces. Benefiting from conductive 1D carbon networks, dielectric-magnetic synergistic effect and abundant multiphase hetero-interfaces, the obtained composites exhibit promoted impedance characteristics and overwhelming microwave absorption. The minimum reflection loss achieves as high as −57.6 dB and the effective absorption bandwidth is 5.8 GHz at 3.2 mm with 40 wt% filler loading. This concept provides us an inspiring strategy to design and fabrication of high-performance absorbers by constructing multiphase core-shell hetero-interfaces.
AB - Core-shell structural absorbers have attracted arousing attention in boosting microwave absorption in theory, however, it still remains great challenges to construct multiphase core-shell hetero-interfaces to manipulate interfacial polarization and final absorption performance. Herein, we propose a competition optimization strategy to fabricate one-dimensional (1D) Ag@NC-Co@NC composites, in which fractured Ag particles are encapsulated into 1D N-doped carbon networks and magnetic Co nanoparticles are wrapped by N-doped carbon shells, yielding to multiphase core-shell hetero-interfaces. Benefiting from conductive 1D carbon networks, dielectric-magnetic synergistic effect and abundant multiphase hetero-interfaces, the obtained composites exhibit promoted impedance characteristics and overwhelming microwave absorption. The minimum reflection loss achieves as high as −57.6 dB and the effective absorption bandwidth is 5.8 GHz at 3.2 mm with 40 wt% filler loading. This concept provides us an inspiring strategy to design and fabrication of high-performance absorbers by constructing multiphase core-shell hetero-interfaces.
KW - Electrical properties
KW - Interface
KW - Microwave absorption
KW - Nano particles
KW - Structural composites
UR - http://www.scopus.com/inward/record.url?scp=85135886211&partnerID=8YFLogxK
U2 - 10.1016/j.compscitech.2022.109663
DO - 10.1016/j.compscitech.2022.109663
M3 - 文献综述
AN - SCOPUS:85135886211
SN - 0266-3538
VL - 228
JO - Composites Science and Technology
JF - Composites Science and Technology
M1 - 109663
ER -