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Generation of Defective Few-Layered Graphene Mesostructures by High-Energy Ball Milling and Their Combination with FeSiCuNbB Microwires for Reinforcing Microwave Absorbing Properties.
López-Sánchez, Jesús; Peña, Álvaro; Serrano, Aída; Del Campo, Adolfo; Rodríguez de la Fuente, Óscar; Carmona, Noemí; Matatagui, Daniel; Horrillo, María Del Carmen; Rubio-Zuazo, Juan; Navarro, Elena; Marín, Pilar.
Afiliação
  • López-Sánchez J; Instituto de Magnetismo Aplicado (IMA), Universidad Complutense de Madrid-Administrador de Infraestructuras Ferroviarias (UCM─ADIF), 28230Las Rozas, Spain.
  • Peña Á; Departamento de Electrocerámica, Instituto de Cerámica y Vidrio─Consejo Superior de Investigaciones Científicas (ICV─CSIC), 28049Madrid, Spain.
  • Serrano A; Instituto de Magnetismo Aplicado (IMA), Universidad Complutense de Madrid-Administrador de Infraestructuras Ferroviarias (UCM─ADIF), 28230Las Rozas, Spain.
  • Del Campo A; Departamento de Física de Materiales, Universidad Complutense de Madrid (UCM), 28040Madrid, Spain.
  • Rodríguez de la Fuente Ó; Departamento de Electrocerámica, Instituto de Cerámica y Vidrio─Consejo Superior de Investigaciones Científicas (ICV─CSIC), 28049Madrid, Spain.
  • Carmona N; Departamento de Electrocerámica, Instituto de Cerámica y Vidrio─Consejo Superior de Investigaciones Científicas (ICV─CSIC), 28049Madrid, Spain.
  • Matatagui D; Instituto de Magnetismo Aplicado (IMA), Universidad Complutense de Madrid-Administrador de Infraestructuras Ferroviarias (UCM─ADIF), 28230Las Rozas, Spain.
  • Horrillo MDC; Departamento de Física de Materiales, Universidad Complutense de Madrid (UCM), 28040Madrid, Spain.
  • Rubio-Zuazo J; Instituto de Magnetismo Aplicado (IMA), Universidad Complutense de Madrid-Administrador de Infraestructuras Ferroviarias (UCM─ADIF), 28230Las Rozas, Spain.
  • Navarro E; Departamento de Física de Materiales, Universidad Complutense de Madrid (UCM), 28040Madrid, Spain.
  • Marín P; Instituto de Magnetismo Aplicado (IMA), Universidad Complutense de Madrid-Administrador de Infraestructuras Ferroviarias (UCM─ADIF), 28230Las Rozas, Spain.
ACS Appl Mater Interfaces ; 15(2): 3507-3521, 2023 Jan 18.
Article em En | MEDLINE | ID: mdl-36606586
ABSTRACT
Defective few-layered graphene mesostructures (DFLGMs) are produced from graphite flakes by high-energy milling processes. We obtain an accurate control of the generated mesostructures, as well as of the amount and classification of the structural defects formed, providing a functional material for microwave absorption purposes. Working under far-field conditions, competitive values of minimum reflection loss coefficient (RLmin) = -21.76 dB and EAB = 4.77 dB are achieved when DFLGMs are immersed in paints at a low volume fraction (1.95%). One step forward is developed by combining them with the excellent absorption behavior that offers amorphous Fe73.5Si13.5B9Cu1Nb microwires (MWs), varying their filling contents, which are below 3%. We obtain a RLmin improvement of 47% (-53.08 dB) and an EAB enhancement of 137% (4 dB) compared to those obtained by MW-based paints. Furthermore, a fmin tunability is demonstrated, maintaining similar RLmin and EAB values, irrespective of an ideal matching thickness. In this scenario, the Maxwell-Garnet standard model is valid, and dielectric losses mainly come from multiple reflections, interfacial and dielectric polarizations, which greatly boost the microwave attenuation of MWs. The present concept can remarkably enhance not only the MW attenuation but can also apply to other microwave absorption architectures of technological interest by adding low quantities of DFLGMs.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article