Effects of Ce-Zn co-substitution on the structural and magnetic properties of M-type strontium hexaferrites
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V. Harris | Le-Zhong Li | Qifan Li | A. Sokolov | Chengju Yu | Kun Qian
[1] Menggang Li,et al. Structure and magnetic properties of the porous Al-substituted barium hexaferrites , 2021 .
[2] J. Nie,et al. Cation distribution and magnetic characteristics of textured BaFe12-Sc O19 hexaferrites: Experimental and theoretical evaluations , 2020 .
[3] N. Kumari,et al. Yttrium-doped strontium hexaferrite particles for microwave absorption application in X-band , 2020, Journal of Materials Science: Materials in Electronics.
[4] Frauke K. H. Gellersen,et al. Sintering, microwave properties, and circulator applications of textured Sc-substituted M-type ferrite thick films , 2019, Journal of the European Ceramic Society.
[5] Manju Sharma,et al. Improvement in magnetic parameters of polycrystalline barium hexaferrite by nonmagnetic cation substitution and microwave processing , 2019, Ceramics International.
[6] Huaiwu Zhang,et al. Textured M-type barium hexaferrite Ba(ZnSn)xFe12−2xO19 with c-axis anisotropy and high squareness ratio , 2019, Ceramics International.
[7] M. Najam-ul-Haq,et al. Study of electrical, dielectric and magnetic properties of Dy-Co bi-substituted strontium hexaferrite nanoparticles , 2019, Journal of Materials Science: Materials in Electronics.
[8] J. Rumble. CRC Handbook of Chemistry and Physics , 2019 .
[9] P. K. Roy,et al. Impact of yttrium on the physical, electro-magnetic and dielectric properties of auto-combustion synthesized nanocrystalline strontium hexaferrite , 2018, Journal of Materials Science: Materials in Electronics.
[10] Young-Min Kang,et al. Effect of Bi 2 O 3 , MnCO 3 additives on the structure and magnetic properties of M-type Sr-hexaferrites , 2018, Journal of Magnetism and Magnetic Materials.
[11] Preksha N. Dhruv,et al. Elucidation of microwave absorption mechanisms in Co–Ga substituted Ba–Sr hexaferrites in X-band , 2018, Journal of Materials Science: Materials in Electronics.
[12] V. Laur,et al. Electromagnetic modeling of anisotropic ferrites—Application to microstrip Y-junction circulator design , 2018, Journal of Applied Physics.
[13] M. Jansen,et al. Ca-Al double-substituted strontium hexaferrites with giant coercivity. , 2018, Chemical communications.
[14] Felix A. Blyakhman,et al. Polyacrylamide Ferrogels with Magnetite or Strontium Hexaferrite: Next Step in the Development of Soft Biomimetic Matter for Biosensor Applications , 2018, Sensors.
[15] Scooter D. Johnson,et al. Growth of self-textured barium hexaferrite ceramics by normal sintering process and their anisotropic magnetic properties , 2017 .
[16] Xiansong Liu,et al. Microstructure and magnetic properties of M-type strontium hexagonal ferrites with Y-Co substitution , 2017 .
[17] Dalveer Kaur,et al. Investigation on structural and microwave absorption property of Co2+ and Y3+ substituted M-type Ba-Sr hexagonal ferrites prepared by a ceramic method , 2017 .
[18] H. Arabi,et al. M-Type Strontium Hexaferrite Nanoparticles Prepared by Sol-Gel Auto-combustion Method: The Role of Co Substitution in Structural, Morphological, and Magnetic Properties , 2017 .
[19] Xiansong Liu,et al. Magnetic and microstructural properties of Al substituted M-type Ca–Sr hexaferrites , 2017 .
[20] A. Baykal,et al. Effect of temperature on magnetic properties of BaYxFe12 -xO19 hexaferrites , 2016 .
[21] S. Mirkazemi,et al. Structure and magnetic properties of Zr–Mn substituted strontium hexaferrite Sr(Zr,Mn)xFe12−2xO19 nanoparticles synthesized by sol–gel auto-combustion method , 2016, Bulletin of Materials Science.
[22] A. Baykal,et al. Structural, magneto-optical properties and cation distribution of SrBixLaxYxFe12−3xO19 (0.0 ≤ x ≤ 0.33) hexaferrites , 2016 .
[23] Xiansong Liu,et al. Synthesis and characterization of Sr1−xYxFe12O19 hexaferrites prepared by solid-state reaction method , 2016, Journal of Materials Science: Materials in Electronics.
[24] V. Harris,et al. Magnetic Properties of a Highly Textured Barium Hexa-Ferrite Quasi-Single Crystal and Its Application in Low-Field Biased Circulators , 2016, Journal of Electronic Materials.
[25] Adam M. Kroening. Advances in Ferrite Redundancy Switching for Ka-Band Receiver Applications , 2016, IEEE Transactions on Microwave Theory and Techniques.
[26] Young-Min Kang,et al. Magnetic properties of Ce–Mn substituted M-type Sr-hexaferrites , 2015 .
[27] Le-Zhong Li,et al. Effect of La-CO substitution on the crystal structure and magnetic properties of low temperature sintered Sr 1-x La x Fe 12-x Co x O 19 (x=0-0.5) ferrites , 2015 .
[28] F. Owens. The Physics of Magnetism , 2015 .
[29] S. Shirsath,et al. Ce3+ incorporated structural and magnetic properties of M type barium hexaferrites , 2015 .
[30] M. Najam-ul-Haq,et al. Structural, electrical, dielectric and magnetic properties of Gd-Sn substituted Sr-hexaferrite synthesized by sol–gel combustion method , 2015 .
[31] X. Liu,et al. Microstructure and magnetic properties of La–Cu doped M-type strontium ferrites prepared by ceramic process , 2014 .
[32] Weiwei Ling. Microstructure and Magnetic Properties of Low-Fired NiCuZn Ferrite with Different Dopants , 2014, IEEE Transactions on Magnetics.
[33] Ting Liu,et al. La and Co substituted M-type barium ferrites processed by sol–gel combustion synthesis , 2013 .
[34] A. Al-Jamel,et al. Structural and magnetic properties of SrFe12−2xTixRuxO19 , 2013 .
[35] R. Pullar. Hexagonal ferrites: A review of the synthesis, properties and applications of hexaferrite ceramics , 2012 .
[36] Z. Zhang,et al. Effect of Nd–Co substitution on magnetic and microwave absorption properties of SrFe12O19 hexaferrites , 2012 .
[37] Y. Sun,et al. Effects of Ce–Co substitution on the magnetic properties of M-type barium hexaferrites , 2012 .
[38] Huaiwu Zhang,et al. Microstructure and magnetic properties of low-temperature sintered CoTi-substituted barium ferrite for LTCC application , 2011 .
[39] S. Mahmood,et al. Magnetic and structural properties of BaFe12−xGaxO19 nanoparticles , 2010 .
[40] Xu Zuo,et al. Recent advances in processing and applications of microwave ferrites , 2009 .
[41] Hadis Morkoç,et al. Microwave ferrites, part 1: fundamental properties , 2009 .
[42] Liangchao Li,et al. Magnetic properties and microstructure of La-substituted BaCr-ferrite powders , 2008 .
[43] R. Green,et al. Dielectric properties of cobalt substituted M-type barium hexaferrite prepared by co-precipitation , 2007 .
[44] S. Ounnunkad. Improving magnetic properties of barium hexaferrites by La or Pr substitution , 2006 .
[45] S. Feng,et al. Effects of Gd2O3 on structure and magnetic properties of Ni-Mn ferrite , 2006 .
[46] C. Kim,et al. Mössbauer studies of La–Zn substitution effect in strontium ferrite nanoparticles , 2005 .
[47] P. Clem,et al. Dielectric properties of random and 〈100〉 oriented SrTiO3 and (Ba,Sr)TiO3 thin films fabricated on 〈100〉 nickel tapes , 2002 .
[48] Changli Wang,et al. (Zn,Ni,Ti)substituted barium ferrite particles with improved temperature coefficient of coercivity (マルチメディアストレージ 第6回アジア情報記録技術シンポジウム〔英文〕) , 2001 .
[49] S. Rößler,et al. Magnetic properties of Zn- and Ti-substituted barium hexaferrite , 1999 .
[50] H. Zhai,et al. Theory of the Single Ion Magnetocrystalline Anisotropy of 3d Ions , 1990 .
[51] G. Albanese. RECENT ADVANCES IN HEXAGONAL FERRITES BY THE USE OF NUCLEAR SPECTROSCOPIC METHODS , 1977 .
[52] E. Gorter. Saturation magnetization of some ferrimagnetic oxides with hexagonal crystal structures , 1957 .