Achieving superior electromagnetic wave absorbers with 2D/3D heterogeneous structures through the confinement effect of reduced graphene oxides
Author:
Publisher
Elsevier BV
Subject
General Chemistry,General Materials Science
Reference82 articles.
1. Electronic structure and electromagnetic properties for 2D electromagnetic functional materials in Gigahertz frequency;Cao;Ann. Phys.,2019
2. Carbon-coated defect-rich MnFe2O4/MnO heterojunction for high-performance microwave absorption;Meng;Carbon,2022
3. Inverse-opal-based carbon composite monoliths for microwave absorption applications;Song;Carbon,2020
4. Tailoring self‐polarization of bimetallic organic frameworks with multiple polar units toward high‐performance consecutive multi‐band electromagnetic wave absorption at Gigahertz;Cheng;Adv. Funct. Mater.,2022
5. Ferroferric oxide/multiwalled carbon nanotube vs polyaniline/ferroferric oxide/multiwalled carbon nanotube multiheterostructures for highly effective microwave absorption;Cao;ACS Appl. Mater. Interfaces,2012
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