TY - JOUR
T1 - Hierarchical MnO2 nanosheets decorated on hollow co/N-doped carbon toward superior electromagnetic wave absorption
AU - Wei, Chenhao
AU - Liu, Sihan
AU - Wang, Chenyu
AU - He, Zizhuang
AU - Liu, Panbo
AU - He, Mukun
AU - Gu, Junwei
N1 - Publisher Copyright:
© 2025
PY - 2025/6
Y1 - 2025/6
N2 - Hierarchical construction and hetero-interfaces design are considered as the promising strategies in improving electromagnetic (EM) wave absorption intensity and broadening absorption bandwidth for metal-organic-frameworks (MOFs) derivatives, but still face challenges in regulating the profitable morphologies. Herein, a self-assembly strategy coupling with a subsequent hydrothermal process have been employed to fabricate hollow Co/N-doped carbon@MnO2 (H-Co/NC@MnO2) composites with hierarchical microstructures and abundant hetero-interfaces. The results indicated that H-Co/NC is constructed by the accumulation of abundant MOFs derivatives without interactions, and the amount of KMnO4 plays an important role in manipulating hierarchical MnO2 nanosheets and optimizing EM wave absorption. Benefiting from the cooperative merits of hierarchical microstructures, multiple hetero-interfaces and the EM synergy, the maximum reflection loss of H-Co/NC@MnO2 is as high as −60.2 dB at 3.7 mm and the absorption bandwidth achieves 8.6 GHz with a thickness of 4 mm. This study inspires us a new avenue to regulate the EM wave absorption of MOFs derivatives by hierarchical construction and hetero-interfaces design.
AB - Hierarchical construction and hetero-interfaces design are considered as the promising strategies in improving electromagnetic (EM) wave absorption intensity and broadening absorption bandwidth for metal-organic-frameworks (MOFs) derivatives, but still face challenges in regulating the profitable morphologies. Herein, a self-assembly strategy coupling with a subsequent hydrothermal process have been employed to fabricate hollow Co/N-doped carbon@MnO2 (H-Co/NC@MnO2) composites with hierarchical microstructures and abundant hetero-interfaces. The results indicated that H-Co/NC is constructed by the accumulation of abundant MOFs derivatives without interactions, and the amount of KMnO4 plays an important role in manipulating hierarchical MnO2 nanosheets and optimizing EM wave absorption. Benefiting from the cooperative merits of hierarchical microstructures, multiple hetero-interfaces and the EM synergy, the maximum reflection loss of H-Co/NC@MnO2 is as high as −60.2 dB at 3.7 mm and the absorption bandwidth achieves 8.6 GHz with a thickness of 4 mm. This study inspires us a new avenue to regulate the EM wave absorption of MOFs derivatives by hierarchical construction and hetero-interfaces design.
KW - Electromagnetic synergy
KW - Electromagnetic wave absorption
KW - Hetero-interfaces
KW - Hierarchical microstructures
KW - Interfacial polarization
UR - http://www.scopus.com/inward/record.url?scp=86000743494&partnerID=8YFLogxK
U2 - 10.1016/j.mtnano.2025.100609
DO - 10.1016/j.mtnano.2025.100609
M3 - 文章
AN - SCOPUS:86000743494
SN - 2588-8420
VL - 30
JO - Materials Today Nano
JF - Materials Today Nano
M1 - 100609
ER -