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Электронный каталог: Kozlenko, D. P. - Multifunctional Magnetic Oxides: Neutron Diffraction Studies
Kozlenko, D. P. - Multifunctional Magnetic Oxides: Neutron Diffraction Studies
Книга (аналит. описание)
Автор: Kozlenko, D. P.
Organic Electronics, Electroceramics, Complex Oxides, and Magnetic Materials [Electronic resource]: Multifunctional Magnetic Oxides: Neutron Diffraction Studies
б.г.
ISBN отсутствует
Автор: Kozlenko, D. P.
Organic Electronics, Electroceramics, Complex Oxides, and Magnetic Materials [Electronic resource]: Multifunctional Magnetic Oxides: Neutron Diffraction Studies
б.г.
ISBN отсутствует
Книга (аналит. описание)
Kozlenko, D.P.
Multifunctional Magnetic Oxides: Neutron Diffraction Studies / D.P.Kozlenko, T.-L.Phan, M.-H.Phan, N.-T.Dang // Encyclopedia of Materials: Electronics : Reference Works : 2023 : [ In 3 Vol.] / Ed.: A.S.M.A.Haseeb. – Amsterdam [etc.] : Elsevier Inc., 2023. - Vol.1 : Organic Electronics, Electroceramics, Complex Oxides, and Magnetic Materials [Electronic resource] / Ed.: A.Nathan, C.Jiang, D.Jeong, [et al.]. – Amsterdam [etc.] : Elsevier Inc., 2023. – P.678-693. – URL: https://doi.org/10.1016/B978-0-12-819728-8.00070-X.
Complex transition-metal (TM) oxides, particularly the perovskite-structured compounds R&sub(1-x)A&sub(x)MO&sub(3), where R is a lanthanide (e.g., La, Nd, Pr), A is an alkaline earth metal (e.g., Ca, Sr, Ba), and M is a transition metal (e.g., Mn, Co, Fe), represent a unique family of materials combining immense technological importance and fascinating physical phenomena originating from coupled structural, electronic and magnetic degrees of freedom. In this article, we present an introduction to the physics of perovskite transition-metal oxides, with a focus on manganites. The microscopic mechanisms that determine the magnetic and associated physical properties of the perovskite TM oxides have been analyzed in terms of the results obtained from neutron diffraction measurements and complementary techniques.
Спец.(статьи,препринты) = С 342 г1 - Замедление и диффузия нейтронов. Дифракция
ОИЯИ = ОИЯИ (JINR)2023
Kozlenko, D.P.
Multifunctional Magnetic Oxides: Neutron Diffraction Studies / D.P.Kozlenko, T.-L.Phan, M.-H.Phan, N.-T.Dang // Encyclopedia of Materials: Electronics : Reference Works : 2023 : [ In 3 Vol.] / Ed.: A.S.M.A.Haseeb. – Amsterdam [etc.] : Elsevier Inc., 2023. - Vol.1 : Organic Electronics, Electroceramics, Complex Oxides, and Magnetic Materials [Electronic resource] / Ed.: A.Nathan, C.Jiang, D.Jeong, [et al.]. – Amsterdam [etc.] : Elsevier Inc., 2023. – P.678-693. – URL: https://doi.org/10.1016/B978-0-12-819728-8.00070-X.
Complex transition-metal (TM) oxides, particularly the perovskite-structured compounds R&sub(1-x)A&sub(x)MO&sub(3), where R is a lanthanide (e.g., La, Nd, Pr), A is an alkaline earth metal (e.g., Ca, Sr, Ba), and M is a transition metal (e.g., Mn, Co, Fe), represent a unique family of materials combining immense technological importance and fascinating physical phenomena originating from coupled structural, electronic and magnetic degrees of freedom. In this article, we present an introduction to the physics of perovskite transition-metal oxides, with a focus on manganites. The microscopic mechanisms that determine the magnetic and associated physical properties of the perovskite TM oxides have been analyzed in terms of the results obtained from neutron diffraction measurements and complementary techniques.
Спец.(статьи,препринты) = С 342 г1 - Замедление и диффузия нейтронов. Дифракция
ОИЯИ = ОИЯИ (JINR)2023