Published by LAP LAMBERT Academic Publishing, 2022
ISBN 10: 6205510103 ISBN 13: 9786205510100
Language: English
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Published by LAP LAMBERT Academic Publishing Okt 2022, 2022
ISBN 10: 6205510103 ISBN 13: 9786205510100
Language: English
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Add to basketTaschenbuch. Condition: Neu. Neuware -The materials which consists of more than one primary ferroic properties i.e. ferromagnetism, ferroelectricity, ferroelasticity are known as multiferroic materials. These materials provide possibilities for potential applications in storage devices, sensors, spintronic devices and photocatalytic reactions. BiFeO3 is the only multiferroic material which has a G-type antiferromagnetic Neel temperature ~653K and ferroelectric Curie temperature ~1100K and both are above room temperature. BiFeO3 contains multiferroic properties at room temperature but it also shows large current leakage due to defects, oxygen vacancy and low ferroelectric properties which limits its properties. To decrease these limitations, doping of transition material can be done in place of Iron. This book represents the synthesis as well as the structural, optical and photocatalytic studies of Bismuth Ferrite (BiFeO3) and Nickel doped Bismuth Ferrite (BiFe1-xNixO3) nanoparticles.Books on Demand GmbH, Überseering 33, 22297 Hamburg 80 pp. Englisch.
Published by LAP LAMBERT Academic Publishing, 2022
ISBN 10: 6205510103 ISBN 13: 9786205510100
Language: English
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Published by LAP LAMBERT Academic Publishing, 2022
ISBN 10: 6205510103 ISBN 13: 9786205510100
Language: English
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Published by LAP LAMBERT Academic Publishing Okt 2022, 2022
ISBN 10: 6205510103 ISBN 13: 9786205510100
Language: English
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Add to basketTaschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The materials which consists of more than one primary ferroic properties i.e. ferromagnetism, ferroelectricity, ferroelasticity are known as multiferroic materials. These materials provide possibilities for potential applications in storage devices, sensors, spintronic devices and photocatalytic reactions. BiFeO3 is the only multiferroic material which has a G-type antiferromagnetic Neel temperature ~653K and ferroelectric Curie temperature ~1100K and both are above room temperature. BiFeO3 contains multiferroic properties at room temperature but it also shows large current leakage due to defects, oxygen vacancy and low ferroelectric properties which limits its properties. To decrease these limitations, doping of transition material can be done in place of Iron. This book represents the synthesis as well as the structural, optical and photocatalytic studies of Bismuth Ferrite (BiFeO3) and Nickel doped Bismuth Ferrite (BiFe1-xNixO3) nanoparticles. 80 pp. Englisch.
Published by LAP LAMBERT Academic Publishing, 2022
ISBN 10: 6205510103 ISBN 13: 9786205510100
Language: English
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Add to basketTaschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The materials which consists of more than one primary ferroic properties i.e. ferromagnetism, ferroelectricity, ferroelasticity are known as multiferroic materials. These materials provide possibilities for potential applications in storage devices, sensors, spintronic devices and photocatalytic reactions. BiFeO3 is the only multiferroic material which has a G-type antiferromagnetic Neel temperature ~653K and ferroelectric Curie temperature ~1100K and both are above room temperature. BiFeO3 contains multiferroic properties at room temperature but it also shows large current leakage due to defects, oxygen vacancy and low ferroelectric properties which limits its properties. To decrease these limitations, doping of transition material can be done in place of Iron. This book represents the synthesis as well as the structural, optical and photocatalytic studies of Bismuth Ferrite (BiFeO3) and Nickel doped Bismuth Ferrite (BiFe1-xNixO3) nanoparticles.
Published by LAP LAMBERT Academic Publishing, 2022
ISBN 10: 6205510103 ISBN 13: 9786205510100
Language: English
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Add to basketCondition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Kumar SushantMr. Sushant kumar holds a Masters degree in Physics and currently perusing PhD in the area of polymer electrolytes, carbon based materials and energy storage devices. He has experience in synthesis and characterization o.