Nanocrystalline oxide spinels are of interest both for fundamental studies in magnetism and technological applications. These materials display properties that differ from their bulk counterparts due to size dependent quantum confinement effects. Spinel Mg-Mn ferrite is a well-known soft magnetic material with very low cubic magnetocrystalline anisotropy, low coercivity and moderate saturation moment. These make it a promising candidate for various technological applications. The interest in the swift heavy ion (SHI) irradiation on nanoferrites is because of the effect of irradiation on the superexchange interactions, which are highly sensitive to any disorder in the ferrites. SHI has been proved a good source to produce a wide variety of defects to create structural strain and disorder in oxide materials that can be further responsible to modify their physical properties. In the present book, we have investigated the structural and magnetic properties of Mg-Mn spinel ferrites and how they get affected, when the particle size approaches to nanoscale range. Finally, how these properties get modified when irradiated with SHI.
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Nanocrystalline oxide spinels are of interest both for fundamental studies in magnetism and technological applications. These materials display properties that differ from their bulk counterparts due to size dependent quantum confinement effects. Spinel Mg-Mn ferrite is a well-known soft magnetic material with very low cubic magnetocrystalline anisotropy, low coercivity and moderate saturation moment. These make it a promising candidate for various technological applications. The interest in the swift heavy ion (SHI) irradiation on nanoferrites is because of the effect of irradiation on the superexchange interactions, which are highly sensitive to any disorder in the ferrites. SHI has been proved a good source to produce a wide variety of defects to create structural strain and disorder in oxide materials that can be further responsible to modify their physical properties. In the present book, we have investigated the structural and magnetic properties of Mg-Mn spinel ferrites and how they get affected, when the particle size approaches to nanoscale range. Finally, how these properties get modified when irradiated with SHI.
PhD in Physics from Dept. of Physics, H.P. University, Shimla in 2007 (research work carried out at IUAC, New Delhi, India). Worked as a PD researcher at IFGW UNICAMP, Sao Paulo, Brazil and ITODYS, Universite Paris Diderot, France. Presently working as an Asst. Prof. at Dept. of Nanotechnology, SGGS World University, Fatehgarh Sahib, India
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Taschenbuch. Etat : Neu. Irradiation induced modification of nanoferrites | structural and magnetic properties | Surender Sharma | Taschenbuch | Englisch | LAP Lambert Academic Publishing | EAN 9783659293276 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. N° de réf. du vendeur 106163399
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Nanocrystalline oxide spinels are of interest both for fundamental studies in magnetism and technological applications. These materials display properties that differ from their bulk counterparts due to size dependent quantum confinement effects. Spinel Mg-Mn ferrite is a well-known soft magnetic material with very low cubic magnetocrystalline anisotropy, low coercivity and moderate saturation moment. These make it a promising candidate for various technological applications. The interest in the swift heavy ion (SHI) irradiation on nanoferrites is because of the effect of irradiation on the superexchange interactions, which are highly sensitive to any disorder in the ferrites. SHI has been proved a good source to produce a wide variety of defects to create structural strain and disorder in oxide materials that can be further responsible to modify their physical properties. In the present book, we have investigated the structural and magnetic properties of Mg-Mn spinel ferrites and how they get affected, when the particle size approaches to nanoscale range. Finally, how these properties get modified when irradiated with SHI. N° de réf. du vendeur 9783659293276
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