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Facile synthesis of a rod-like Ni/TiO2/C nanocomposite for enhanced electromagnetic wave absorption.
Hua, Yu; Zhang, Xiaomeng; Chen, Fulin; Sun, Yuantao; Wang, Xinyu; Wen, Ziliang; Tan, Qinghao; Sun, Chenxi; Bateer, Buhe.
Afiliación
  • Hua Y; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Zhang X; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Chen F; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Sun Y; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Wang X; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Wen Z; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Tan Q; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Sun C; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
  • Bateer B; College of Materials and Chemical Engineering, Heilongjiang Institute of Technology Harbin 150050 China zhxm0616@126.com bate1976@sina.com.
RSC Adv ; 14(12): 8100-8107, 2024 Mar 06.
Article en En | MEDLINE | ID: mdl-38464690
ABSTRACT
In this study, we utilized a simple calcination method to prepare a Ni/TiO2/C composite, which was synchronously grown from magnetic, semiconductor, and conductive materials. XRD, SEM, Raman, and XPS characterization methods were used to analyze the crystal structure, graphitization degree, morphology size, and valence state of Ni/TiO2/C, and its electromagnetic wave absorption performance was tested. It was revealed that rod-like Ni/TiO2/C had good electromagnetic wave absorption performance at a thickness of 1-5.5 mm; in particular, its reflectance reached -40 dB at 3.5 mm and its absorption bandwidth (reflectivity < -10 dB) reached 4.4 GHz (6.0-10.4 GHz) at a thickness of 4.0 mm. It was thus revealed that its electromagnetic wave absorption rate and absorption bandwidth can be regulated by its thickness. Compared with Ni/TiO2, it was proven that the conductive materials (carbon), magnetic materials (Ni), and semiconductor materials (TiO2) in the rod-like Ni/TiO2/C composite can synergistically absorb electromagnetic wave energy through dielectric and magnetic losses.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2024 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2024 Tipo del documento: Article