Micro-flower like Core-shell structured ZnCo@C@1T-2H-MoS2 composites for broadband electromagnetic wave absorption and photothermal performance.
J Colloid Interface Sci
; 622: 261-271, 2022 Sep 15.
Article
en En
| MEDLINE
| ID: mdl-35512590
Core-shell structure has been receiving extensive attention to enhance the electromagnetic wave (EMW) absorption performance due to its unique interface effect. In this paper, a micro-flower like ZnCo@C@1T-2H-MoS2 was prepared through MOF self-template method. The introduction 1T-2H-MoS2 shell helps optimize impedance matching of the CoZn@C particles to improve the EMW absorption ability. The minimal reflection loss (RLmin) value of ZnCo@C@1T-2H-MoS2 is -35.83â¯dB with a thickness of 5.0â¯mm at 5.83â¯GHz and the effective absorption (RLâ¯<â¯-10â¯dB) bandwidth up to 4.56â¯GHz at 2.0â¯mm thickness. Meanwhile, the overall effective absorption bandwidth (OEAB) can reach up to 13.44â¯GHz from 4.56 to 18.0â¯GHz. Moreover, ultrafast photothermal performances are also achieved, which can guarantee the normal functioning of ZnCo@C@1T-2H-MoS2 materials in cold conditions. The excellent EMW absorption and photothermal performance are attributed to the unique structure designed with the core of magnetic ZnCo@C rhombic dodecahedral and the shell of dielectric micro-flower like 1T-2H-MoS2 optimize impedance matching.
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1
Colección:
01-internacional
Base de datos:
MEDLINE
Asunto principal:
Radiación Electromagnética
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Molibdeno
Idioma:
En
Revista:
J Colloid Interface Sci
Año:
2022
Tipo del documento:
Article
País de afiliación:
China
Pais de publicación:
Estados Unidos