[HTML][HTML] Recent progress on carbon-based microwave absorption materials for multifunctional applications: A review
F Zhang, N Li, JF Shi, L Xu, LC Jia, YY Wang… - Composites Part B …, 2024 - Elsevier
With the rapid development of 5G wireless communication and radar detection technology,
how to reduce the threat of microwave radiation to people's health and achieve the excellent …
how to reduce the threat of microwave radiation to people's health and achieve the excellent …
Composites based on layered materials for absorption of microwaves and electromagnetic shielding
With rapid progress in science and technology, the demand for shielding has been growing
day by day. In order to overcome the electromagnetic pollution, it is necessary to develop …
day by day. In order to overcome the electromagnetic pollution, it is necessary to develop …
Constructing multiple heterogeneous interfaces in one-dimensional carbon fiber materials for superior electromagnetic wave absorption
Due to impedance mismatch and a single loss mechanism, carbon fiber fails to meet the
requirements for efficient absorbers in terms of lightweight construction and broad …
requirements for efficient absorbers in terms of lightweight construction and broad …
Enhanced electromagnetic wave absorption performance of hematite@ carbon nanotubes/polyacrylamide hydrogel composites with good flexibility and …
To expand the application field of electromagnetic wave functional materials based on light,
thin, and cost-effective, the integration of the structure and function of electromagnetic wave …
thin, and cost-effective, the integration of the structure and function of electromagnetic wave …
Microwave absorption performance of porous heterogeneous SiC/SiO2 microspheres
It is confirmed that the composites with multiple components and plentiful heterogeneous
interfaces have been considered as preferred efficient electromagnetic (EM) wave …
interfaces have been considered as preferred efficient electromagnetic (EM) wave …
Graphene-based aerogel microspheres with annual ring-like structures for broadband electromagnetic attenuation
Y Tian, D Zhi, T Li, J Li, J Li, Z Xu, W Kang… - Chemical Engineering …, 2023 - Elsevier
Graphene aerogels have attracted extensive attention in electromagnetic protection due to
lightweight and efficient microwave absorbing properties, but until now the design of its …
lightweight and efficient microwave absorbing properties, but until now the design of its …
Optimization of multiple attenuation mechanisms by cation substitution in imidazolic MOFs-derived porous composites for superior broadband electromagnetic wave …
H Yu, X Kou, X Zuo, D **, H Guan, P Yin, L Xu… - Journal of Materials …, 2024 - Elsevier
Metal-organic frameworks (MOFs) derived composites are extremely potential
electromagnetic wave (EMW) absorbers. However, the permittivity of absorbers directly …
electromagnetic wave (EMW) absorbers. However, the permittivity of absorbers directly …
Heterostructure design of carbon fiber@ graphene@ layered double hydroxides synergistic microstructure for lightweight and flexible microwave absorption
Z Lu, Y Wang, X Di, N Wang, R Cheng, L Yang - Carbon, 2022 - Elsevier
At present, there is an urgent need to develop lightweight and flexible high-efficiency
microwave absorbing materials. Herein, reduced graphene oxide (RGO) was successfully …
microwave absorbing materials. Herein, reduced graphene oxide (RGO) was successfully …
Simultaneous optimization of conduction and polarization losses in CNT@ NiCo compounds for superior electromagnetic wave absorption
Polarization and conduction losses are the two most crucial dielectric loss mechanisms for
carbon-based composites, but their synergistic effects in different frequency bands need to …
carbon-based composites, but their synergistic effects in different frequency bands need to …
All-in-one: Multi-parameter engineering on γ-Fe2O3 for ultra-broadband microwave absorption
X Kong, P Wu, S Tian, T Chen, S Zhao, Q Liu… - Chemical Engineering …, 2024 - Elsevier
The functionality and property of materials are normally controlled by changing their
composition, defects, morphology, lattice, crystallinity, etc. However, achieving a wide …
composition, defects, morphology, lattice, crystallinity, etc. However, achieving a wide …