author_facet KONG, L. B.
LIU, L.
ZHAI, J. W.
LI, Z. W.
YANG, Z. H.
KONG, L. B.
LIU, L.
ZHAI, J. W.
LI, Z. W.
YANG, Z. H.
author KONG, L. B.
LIU, L.
ZHAI, J. W.
LI, Z. W.
YANG, Z. H.
spellingShingle KONG, L. B.
LIU, L.
ZHAI, J. W.
LI, Z. W.
YANG, Z. H.
Journal of Advanced Dielectrics
REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
Electrical and Electronic Engineering
Condensed Matter Physics
Ceramics and Composites
Electronic, Optical and Magnetic Materials
author_sort kong, l. b.
spelling KONG, L. B. LIU, L. ZHAI, J. W. LI, Z. W. YANG, Z. H. 2010-135X 2010-1368 World Scientific Pub Co Pte Lt Electrical and Electronic Engineering Condensed Matter Physics Ceramics and Composites Electronic, Optical and Magnetic Materials http://dx.doi.org/10.1142/s2010135x12300101 <jats:p> Dielectric properties of ferrite ceramics have been less reported than their magnetic properties. Our recent study indicated that ferrite ceramics with very low dielectric loss tangent can be developed by using appropriate sintering aids, together with the optimization of other sintering parameters such as sintering temperature and time duration. Among various candidates of sintering aids, Bi <jats:sub>2</jats:sub> O <jats:sub>3</jats:sub> is the most promising one. It is important to find that the optimized concentration of sintering aid for full densification is not sufficient to achieve lowest dielectric loss tangent. This short review was aimed to summarize the understanding in microstructural evolution, grain growth, densification and dielectric properties of ferrite ceramics as a function of sintering aid concentration and sintering parameters, which could be used as a guidance to develop ferrite ceramics with low dielectric loss tangents for various applications. </jats:p> REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS Journal of Advanced Dielectrics
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title REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_unstemmed REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_full REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_fullStr REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_full_unstemmed REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_short REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_sort revisit to dielectric properties of ferrite ceramics
topic Electrical and Electronic Engineering
Condensed Matter Physics
Ceramics and Composites
Electronic, Optical and Magnetic Materials
url http://dx.doi.org/10.1142/s2010135x12300101
publishDate 2012
physical 1230010
description <jats:p> Dielectric properties of ferrite ceramics have been less reported than their magnetic properties. Our recent study indicated that ferrite ceramics with very low dielectric loss tangent can be developed by using appropriate sintering aids, together with the optimization of other sintering parameters such as sintering temperature and time duration. Among various candidates of sintering aids, Bi <jats:sub>2</jats:sub> O <jats:sub>3</jats:sub> is the most promising one. It is important to find that the optimized concentration of sintering aid for full densification is not sufficient to achieve lowest dielectric loss tangent. This short review was aimed to summarize the understanding in microstructural evolution, grain growth, densification and dielectric properties of ferrite ceramics as a function of sintering aid concentration and sintering parameters, which could be used as a guidance to develop ferrite ceramics with low dielectric loss tangents for various applications. </jats:p>
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author KONG, L. B., LIU, L., ZHAI, J. W., LI, Z. W., YANG, Z. H.
author_facet KONG, L. B., LIU, L., ZHAI, J. W., LI, Z. W., YANG, Z. H., KONG, L. B., LIU, L., ZHAI, J. W., LI, Z. W., YANG, Z. H.
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description <jats:p> Dielectric properties of ferrite ceramics have been less reported than their magnetic properties. Our recent study indicated that ferrite ceramics with very low dielectric loss tangent can be developed by using appropriate sintering aids, together with the optimization of other sintering parameters such as sintering temperature and time duration. Among various candidates of sintering aids, Bi <jats:sub>2</jats:sub> O <jats:sub>3</jats:sub> is the most promising one. It is important to find that the optimized concentration of sintering aid for full densification is not sufficient to achieve lowest dielectric loss tangent. This short review was aimed to summarize the understanding in microstructural evolution, grain growth, densification and dielectric properties of ferrite ceramics as a function of sintering aid concentration and sintering parameters, which could be used as a guidance to develop ferrite ceramics with low dielectric loss tangents for various applications. </jats:p>
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spelling KONG, L. B. LIU, L. ZHAI, J. W. LI, Z. W. YANG, Z. H. 2010-135X 2010-1368 World Scientific Pub Co Pte Lt Electrical and Electronic Engineering Condensed Matter Physics Ceramics and Composites Electronic, Optical and Magnetic Materials http://dx.doi.org/10.1142/s2010135x12300101 <jats:p> Dielectric properties of ferrite ceramics have been less reported than their magnetic properties. Our recent study indicated that ferrite ceramics with very low dielectric loss tangent can be developed by using appropriate sintering aids, together with the optimization of other sintering parameters such as sintering temperature and time duration. Among various candidates of sintering aids, Bi <jats:sub>2</jats:sub> O <jats:sub>3</jats:sub> is the most promising one. It is important to find that the optimized concentration of sintering aid for full densification is not sufficient to achieve lowest dielectric loss tangent. This short review was aimed to summarize the understanding in microstructural evolution, grain growth, densification and dielectric properties of ferrite ceramics as a function of sintering aid concentration and sintering parameters, which could be used as a guidance to develop ferrite ceramics with low dielectric loss tangents for various applications. </jats:p> REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS Journal of Advanced Dielectrics
spellingShingle KONG, L. B., LIU, L., ZHAI, J. W., LI, Z. W., YANG, Z. H., Journal of Advanced Dielectrics, REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS, Electrical and Electronic Engineering, Condensed Matter Physics, Ceramics and Composites, Electronic, Optical and Magnetic Materials
title REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_full REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_fullStr REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_full_unstemmed REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_short REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
title_sort revisit to dielectric properties of ferrite ceramics
title_unstemmed REVISIT TO DIELECTRIC PROPERTIES OF FERRITE CERAMICS
topic Electrical and Electronic Engineering, Condensed Matter Physics, Ceramics and Composites, Electronic, Optical and Magnetic Materials
url http://dx.doi.org/10.1142/s2010135x12300101