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Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles

The intrinsically core/shell structured La(0.6)Sr(0.4)MnO(3)nanoparticles with amorphous shells and ferromagnetic cores have been prepared. The magnetic, dielectric and microwave absorption properties are investigated in the frequency range from 1 to 12 GHz. An optimal reflection loss of −41.1 dB is...

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Detalles Bibliográficos
Autores principales: Cheng, YL, Dai, JM, Zhu, XB, Wu, DJ, Yang, ZR, Sun, YP
Formato: Texto
Lenguaje:English
Publicado: Springer 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2894104/
https://www.ncbi.nlm.nih.gov/pubmed/20596374
http://dx.doi.org/10.1007/s11671-009-9374-y
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author Cheng, YL
Dai, JM
Zhu, XB
Wu, DJ
Yang, ZR
Sun, YP
author_facet Cheng, YL
Dai, JM
Zhu, XB
Wu, DJ
Yang, ZR
Sun, YP
author_sort Cheng, YL
collection PubMed
description The intrinsically core/shell structured La(0.6)Sr(0.4)MnO(3)nanoparticles with amorphous shells and ferromagnetic cores have been prepared. The magnetic, dielectric and microwave absorption properties are investigated in the frequency range from 1 to 12 GHz. An optimal reflection loss of −41.1 dB is reached at 8.2 GHz with a matching thickness of 2.2 mm, the bandwidth with a reflection loss less than −10 dB is obtained in the 5.5–11.3 GHz range for absorber thicknesses of 1.5–2.5 mm. The excellent microwave absorption properties are a consequence of the better electromagnetic matching due to the existence of the protective amorphous shells, the ferromagnetic cores, as well as the particular core/shell microstructure. As a result, the La(0.6)Sr(0.4)MnO(3)nanoparticles with amorphous shells and ferromagnetic cores may become attractive candidates for the new types of electromagnetic wave absorption materials.
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spelling pubmed-28941042010-06-30 Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles Cheng, YL Dai, JM Zhu, XB Wu, DJ Yang, ZR Sun, YP Nanoscale Res Lett Nano Express The intrinsically core/shell structured La(0.6)Sr(0.4)MnO(3)nanoparticles with amorphous shells and ferromagnetic cores have been prepared. The magnetic, dielectric and microwave absorption properties are investigated in the frequency range from 1 to 12 GHz. An optimal reflection loss of −41.1 dB is reached at 8.2 GHz with a matching thickness of 2.2 mm, the bandwidth with a reflection loss less than −10 dB is obtained in the 5.5–11.3 GHz range for absorber thicknesses of 1.5–2.5 mm. The excellent microwave absorption properties are a consequence of the better electromagnetic matching due to the existence of the protective amorphous shells, the ferromagnetic cores, as well as the particular core/shell microstructure. As a result, the La(0.6)Sr(0.4)MnO(3)nanoparticles with amorphous shells and ferromagnetic cores may become attractive candidates for the new types of electromagnetic wave absorption materials. Springer 2009-06-17 /pmc/articles/PMC2894104/ /pubmed/20596374 http://dx.doi.org/10.1007/s11671-009-9374-y Text en Copyright ©2009 to the authors
spellingShingle Nano Express
Cheng, YL
Dai, JM
Zhu, XB
Wu, DJ
Yang, ZR
Sun, YP
Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles
title Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles
title_full Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles
title_fullStr Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles
title_full_unstemmed Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles
title_short Enhanced Microwave Absorption Properties of Intrinsically Core/shell Structured La(0.6)Sr(0.4)MnO(3)Nanoparticles
title_sort enhanced microwave absorption properties of intrinsically core/shell structured la(0.6)sr(0.4)mno(3)nanoparticles
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2894104/
https://www.ncbi.nlm.nih.gov/pubmed/20596374
http://dx.doi.org/10.1007/s11671-009-9374-y
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