Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method
The microwave absorption properties of La0.85Ag0.15MnO3 prepared by solid state method was investigated. Analysis of X-ray diffraction data using a refinement technique confirmed the rhombohedral structure of the samples. The microstructure of the sample characterised from field emission scanning el...
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Trans Tech Publications Ltd
2021
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2-s2.0-85120521938 Nur Ain Athirah C.A.; Norazila I.; Zaiki A.; Raba’Ah Syahidah A.; Muhammad Syazwan M.; Ahmad Kamal Y. Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method 2021 Solid State Phenomena 317 SSP 10.4028/www.scientific.net/SSP.317.22 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85120521938&doi=10.4028%2fwww.scientific.net%2fSSP.317.22&partnerID=40&md5=1e2aa6e1fac43b04d25a50bcd3a9328c The microwave absorption properties of La0.85Ag0.15MnO3 prepared by solid state method was investigated. Analysis of X-ray diffraction data using a refinement technique confirmed the rhombohedral structure of the samples. The microstructure of the sample characterised from field emission scanning electron microscope micrographs showed irregular grain shapes with grain sizes ranging from 800 to 1500 nm. M-H curves revealed the weak ferromagnetic properties of the sample at room temperature. The real and imaginary parts of permittivity and permeability as well as microwave reflection loss were measured by a vector network analyser in the 8–18 GHz frequency range. The La0.85Ag0.15MnO3 sample showed a minimum reflection loss of –57.2 dB at 16.41 GHz, with a –10dB bandwidth (corresponding to reflection loss below –10 dB, or 90% absorption) of 2.67 GHz. The microwave absorption of La0.85Ag0.15MnO3 mainly arises from the conduction loss and domain wall motion which contributed to dielectric loss and magnetic loss, respectively. © 2021 Trans Tech Publications Ltd, Switzerland. Trans Tech Publications Ltd 10120394 English Conference paper |
author |
Nur Ain Athirah C.A.; Norazila I.; Zaiki A.; Raba’Ah Syahidah A.; Muhammad Syazwan M.; Ahmad Kamal Y. |
spellingShingle |
Nur Ain Athirah C.A.; Norazila I.; Zaiki A.; Raba’Ah Syahidah A.; Muhammad Syazwan M.; Ahmad Kamal Y. Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method |
author_facet |
Nur Ain Athirah C.A.; Norazila I.; Zaiki A.; Raba’Ah Syahidah A.; Muhammad Syazwan M.; Ahmad Kamal Y. |
author_sort |
Nur Ain Athirah C.A.; Norazila I.; Zaiki A.; Raba’Ah Syahidah A.; Muhammad Syazwan M.; Ahmad Kamal Y. |
title |
Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method |
title_short |
Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method |
title_full |
Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method |
title_fullStr |
Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method |
title_full_unstemmed |
Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method |
title_sort |
Microwave absorption properties of monovalent doped la0.85ag0.15mno3 manganites prepared by solid state method |
publishDate |
2021 |
container_title |
Solid State Phenomena |
container_volume |
317 SSP |
container_issue |
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doi_str_mv |
10.4028/www.scientific.net/SSP.317.22 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85120521938&doi=10.4028%2fwww.scientific.net%2fSSP.317.22&partnerID=40&md5=1e2aa6e1fac43b04d25a50bcd3a9328c |
description |
The microwave absorption properties of La0.85Ag0.15MnO3 prepared by solid state method was investigated. Analysis of X-ray diffraction data using a refinement technique confirmed the rhombohedral structure of the samples. The microstructure of the sample characterised from field emission scanning electron microscope micrographs showed irregular grain shapes with grain sizes ranging from 800 to 1500 nm. M-H curves revealed the weak ferromagnetic properties of the sample at room temperature. The real and imaginary parts of permittivity and permeability as well as microwave reflection loss were measured by a vector network analyser in the 8–18 GHz frequency range. The La0.85Ag0.15MnO3 sample showed a minimum reflection loss of –57.2 dB at 16.41 GHz, with a –10dB bandwidth (corresponding to reflection loss below –10 dB, or 90% absorption) of 2.67 GHz. The microwave absorption of La0.85Ag0.15MnO3 mainly arises from the conduction loss and domain wall motion which contributed to dielectric loss and magnetic loss, respectively. © 2021 Trans Tech Publications Ltd, Switzerland. |
publisher |
Trans Tech Publications Ltd |
issn |
10120394 |
language |
English |
format |
Conference paper |
accesstype |
|
record_format |
scopus |
collection |
Scopus |
_version_ |
1809678028094046208 |