Enhancing high frequency magneto-dielectric performance with exchange-coupled garnet/spinel ferrite (Y3Fe5O12/Mg0.4Cd0.4Co0.2Fe2O4) composites
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[1] M. Karaaslan,et al. PANI-coated YIG/CFO Hybrid Composites as Advanced Electromagnetic Wave Absorber Through X-band , 2023, Journal of Alloys and Compounds.
[2] Jiaxin Xu,et al. Improved Permeability and Decreased Core Loss of Iron-Based Soft Magnetic Composites with Yig Ferrite Insulating Layer , 2022, SSRN Electronic Journal.
[3] Jianhao Du,et al. Interface-Driven Multiferroicity in Cubic BaTiO3-SrTiO3 Nanocomposites. , 2022, ACS nano.
[4] Sadaqat Ali,et al. Impact of Ga3+ Ions on the Structure, Magnetic, and Optical Features of Co-Ni Nanostructured Spinel Ferrite Microspheres , 2022, Nanomaterials.
[5] M. Gondal,et al. Structural parameters, energy states and magnetic properties of the novel Se-doped NiFe2O4 ferrites as highly efficient electrocatalysts for HER , 2022, Ceramics International.
[6] A. Trukhanov,et al. One-pot synthesis of hard/soft SrFe10O19/x(Ni0.8Zn0.2Fe1.8Cr0.2O4) nanocomposites: Electrical features and reflection losses , 2022, Ceramics International.
[7] Samir Ali Abd El-Kaream,et al. Structure, Morphology and Electrical/Magnetic Properties of Ni-Mg Nano-Ferrites from a New Perspective , 2022, Nanomaterials.
[8] D. E. Zhivulin,et al. Impact of the Zn–Co content on structural and magnetic characteristics of the Ni spinel ferrites , 2022, Ceramics International.
[9] A. Baykal,et al. Impact of Sm3+ and Er3+ Cations on the Structural, Optical, and Magnetic Traits of Spinel Cobalt Ferrite Nanoparticles: Comparison Investigation , 2022, ACS omega.
[10] A. Trukhanov,et al. Investigation of exchange coupling and microwave properties of hard/soft (SrNi0.02Zr0.01Fe11.96O19)/(CoFe2O4)x nanocomposites , 2022, Materials Today Nano.
[11] A. K. Srivastava,et al. Influence of Temperature on Structural and Magnetic Properties of Gd3AlxFe5−xO12 (x = 2) , 2021, Crystal Research and Technology.
[12] A. K. Srivastava,et al. Effect of Y3+, Bi3+, La3+ substitution on structural, optical and magnetic properties of gadolinium iron garnets , 2021, Materials Today: Proceedings.
[13] A. Trukhanov,et al. Alterations in the magnetic and electrodynamic properties of hard-soft Sr0.5Ba0.5Eu0.01Fe12O19/NixCuyZnwFe2O4 nanocomposites , 2021, Journal of Materials Research and Technology.
[14] N. Perov,et al. Effect of Co content on magnetic features and SPIN states IN Ni–Zn spinel ferrites , 2021 .
[15] Khalid Mujasam Batoo,et al. Strain mediated enhancement in magnetoelectric properties of sonochemically synthesized piezoelectric and piezomagnetic composites , 2021, Ceramics International.
[16] P. K. Roy,et al. Synthesis and characterization of Ba2Co2Fe12O22–NiFe2O4 ferrite composites: a useful substrate material in miniaturizing antenna , 2021, Journal of Materials Science: Materials in Electronics.
[17] Gang Wang,et al. Matching impedance of Cd-substituted magnesium ferrites for wideband and miniaturized antennas , 2020 .
[18] G. Yasin,et al. Investigation of structural, morphological, optical, magnetic and dielectric properties of (1-x)BaTiO3/xSr0.92Ca0.04Mg0.04Fe12O19 composites , 2020, Journal of Magnetism and Magnetic Materials.
[19] Baoyuan Wang,et al. Magnetic characteristics and optical band alignments of rare earth (Sm+3, Nd+3) doped garnet ferrite nanoparticles (NPs) , 2020 .
[20] A. Kozlovskiy,et al. The study of the structural characteristics and catalytic activity of Co/CoCo2O4 nanowires , 2020 .
[21] S. Mansour,et al. The Magneto-mechanical Properties of Cobalt Substituted Mg-Zn Nanoferrites , 2020, Journal of Superconductivity and Novel Magnetism.
[22] Sanjay R. Mishra,et al. X-band shielding of electromagnetic interference (EMI) by Co2Y barium hexaferrite, bismuth copper titanate (BCTO), and polyaniline (PANI) composite , 2020 .
[23] A. D’assunção,et al. High-Quality Nickel Ferrite Synthesized by a Modified Sol–Gel Technique Applied as Microstrip Patch Antenna Substrate , 2020, Journal of Electronic Materials.
[24] S. R. Bhongale. Mg-Nd-Cd ferrite as substrate for X-band microstrip patch antenna , 2020 .
[25] X. Lou,et al. Interface-charge induced giant electrocaloric effect in lead free ferroelectric thin-film bilayers. , 2019, Nano letters.
[26] S. Bindra Narang,et al. Ka band absorption properties of substituted nickel spinel ferrites: Comparison of open-circuit approach and short-circuit approach , 2019 .
[27] M. Maisnam,et al. Improvement in the Magnetic Hysteresis Properties of Nanocrystalline Lithium Ferrites with Addition of Yttrium Manganite , 2019 .
[28] A. Kozlovskiy,et al. Investigation of phase transformations and corrosion resistance in Co/CoCo2O4 nanowires and their potential use as a basis for lithium-ion batteries , 2019, Scientific Reports.
[29] Preksha N. Dhruv,et al. Investigation of structural, hysteresis and electromagnetic parameters for microwave absorption application in doped Ba–Sr hexagonal ferrites at X-band , 2019, Journal of Alloys and Compounds.
[30] A. K. Srivastava,et al. Electromagnetic interference (EMI) shielding, microwave absorption, and optical sensing properties of BaM/CCTO composites in Ku-band , 2019, Results in Physics.
[31] R. Kotnala,et al. Surprisingly high magneto-electric coupling in cubic Co0.7Fe2.3O4-SrTiO3 nano-composites , 2019, Journal of Alloys and Compounds.
[32] A. K. Srivastava,et al. Enhanced dielectric and optical properties of nanoscale barium hexaferrites for optoelectronics and high frequency application , 2018, Chinese Physics B.
[33] P. Vasambekar,et al. Microwave sintered Mg-Cd ferrite substrates for microstrip patch antennas in X-band , 2018, AEU - International Journal of Electronics and Communications.
[34] A. Baykal,et al. Exchange spring magnetic behavior of Sr0.3Ba0.4Pb0.3Fe12O19/(CuFe2O4)x nanocomposites fabricated by a one-pot citrate sol-gel combustion method , 2018, Journal of Alloys and Compounds.
[35] Aakansha,et al. Magnetic and Dielectric Properties of Y3−xSmxFe5O12 (x = 0.0 to 3.0) , 2018 .
[36] S. B. Narang,et al. Investigation of electrical, dielectric and microwave properties of double substituted M-type Ba(1−2x)LaxNaxFe10Co0.5TiMn0.5O19 hexaferrite , 2018, Journal of Materials Science: Materials in Electronics.
[37] S. B. Narang,et al. Effect of La-Na Doping in Co-Ti Substituted Barium Hexaferrite on Electrical and X-Band Microwave Absorption Properties , 2018, Journal of Electronic Materials.
[38] F. M. Idris,et al. Influence of sintering temperature on the structural, electrical and microwave properties of yttrium iron garnet (YIG) , 2018, Journal of Materials Science: Materials in Electronics.
[39] G. Wang,et al. Low loss, enhanced magneto-dielectric properties of Bi2O3 doped Mg-Cd ferrites for high frequency antennas , 2018 .
[40] M. F. Ain,et al. A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application , 2017 .
[41] B. Kuanr,et al. YIG based broad band microwave absorber: A perspective on synthesis methods , 2017 .
[42] S. Kanagesan,et al. Co–Ti- and Mn–Ti-substituted barium ferrite for electromagnetic property tuning and enhanced microwave absorption synthesized via mechanical alloying , 2017, Journal of the Australian Ceramic Society.
[43] R. B. Tangsali,et al. Influence of rare earth (Nd+3) doping on structural and magnetic properties of nanocrystalline manganese-zinc ferrite , 2017 .
[44] S. B. Narang,et al. Effect of thickness on microwave absorptive behavior of La-Na doped Co-Zr barium hexaferrites in 18.0–26.5 GHz band , 2017 .
[45] R. Razavi,et al. Magnetic properties of hard-soft SrFe10Al2O19/Co0.8Ni0.2Fe2O4 ferrite synthesized by one-pot sol–gel auto-combustion , 2016 .
[46] A. Sattar,et al. Comparative study of structure and magnetic properties of micro- and nano-sized GdxY3−xFe5O12 garnet , 2016 .
[47] A. Thakur,et al. Effective Permeability and Miniaturization Estimation of Ferrite-loaded Microstrip Patch Antenna , 2016, Journal of Electronic Materials.
[48] E. Markiewicz,et al. Dielectric and magnetic response of SrFe12O19–CoFe2O4 composites obtained by solid state reaction , 2016 .
[49] J. Mattei,et al. Low loss composite nano ferrite with matching permittivity and permeability in UHF band , 2016 .
[50] Manjusha,et al. Structural, dielectric, ferroelectric and magnetic properties of (x) CoFe2O4-(1-x) BaTiO3 composite , 2015, IEEE Transactions on Dielectrics and Electrical Insulation.
[51] S. Jacobo,et al. Sr hexaferrite/Ni ferrite nanocomposites: Magnetic behavior and microwave absorbing properties in the X-band , 2015 .
[52] V. Harris,et al. Tunable permittivity and permeability of low loss Z + Y-type ferrite composites for ultra-high frequency applications , 2015 .
[53] D. Makovec,et al. Composite nanoplatelets combining soft-magnetic iron oxide with hard-magnetic barium hexaferrite. , 2015, Nanoscale.
[54] V. Harris,et al. Low loss factor Co2Z ferrite composites with equivalent permittivity and permeability for ultra-high frequency applications , 2014 .
[55] J. Liu,et al. Synthesis and magnetic properties of hard-soft SRFe10Al2O19/NiZnFe2O4 ferrite nanocomposites. , 2014, Journal of nanoscience and nanotechnology.
[56] M. A. Gafur,et al. Structural, magnetic and transport properties of magnetoelectric composites , 2013 .
[57] H. Shokrollahi,et al. Comparison of microwave absorption properties of SrFe12O19, SrFe12O19/NiFe2O4, and NiFe2O4 particles , 2013 .
[58] S. Khan,et al. Magnetic and electrical properties of In doped cobalt ferrite nanoparticles , 2012 .
[59] A. Azam,et al. Investigation of structural, dielectric, and magnetic properties of hard and soft mixed ferrite composites , 2012 .
[60] R. Pullar. Hexagonal ferrites: A review of the synthesis, properties and applications of hexaferrite ceramics , 2012 .
[61] K. Rao,et al. Effects of heat treatment conditions on the structural and magnetic properties of MgCuZn nano ferrite , 2012 .
[62] M. Vairavel,et al. Crystallization kinetics of Nd-substituted yttrium iron garnet prepared through sol–gel auto-combustion method , 2012 .
[63] V. G. Harris,et al. Modern Microwave Ferrites , 2012, IEEE Transactions on Magnetics.
[64] C. Vittoria,et al. Electronic tuning of magnetic permeability in Co2Z hexaferrite toward high frequency electromagnetic device miniaturization , 2011 .
[65] Carmine Vittoria,et al. Numeric Simulations of a Novel Wideband Electromagnetic Band Gap Metamaterial Utilizing Oriented Cobalt-Substituted Z-Type Barium Hexaferrites , 2011, IEEE Magnetics Letters.
[66] Jaejin Lee,et al. Low loss Co2Z (Ba3Co2Fe24O41)–glass composite for gigahertz antenna application , 2011 .
[67] I. S. Hudiara,et al. Complex permittivity and complex permeability of Sr ions substituted Ba ferrite at X-band , 2008 .
[68] L. Deng,et al. Microwave-absorbing properties of NiCoZn spinel ferrites , 2007 .
[69] D. Niznansky,et al. On the synthesis and characterization of iron-containing garnets (Y3Fe5O12, YIG and Fe3Al5O12, IAG) , 2006 .
[70] O. Hellwig,et al. Anisotropy dependence of irreversible switching in Fe∕SmCo and FeNi∕FePt exchange spring magnet films , 2005, cond-mat/0504492.
[71] Dominique Givord,et al. Beating the superparamagnetic limit with exchange bias , 2003, Nature.
[72] Long-Qing Chen,et al. Topological evolution during coupled grain growth and Ostwald ripening in volume-conserved 2-D two-phase polycrystals , 1997 .
[73] A. Ghasemi,et al. Energy product enhancement in sufficiently exchange-coupled nanocomposite ferrites , 2019, Journal of Magnetism and Magnetic Materials.
[74] S. Srinath,et al. Effect of Gd3+ on dielectric and magnetic properties of Y3Fe5O12 , 2014 .
[75] M. Mohamed,et al. Structural, magnetic and dielectric properties of (PANI)–Ni0.5Zn0.5Fe1.5Cr0.5O4 nanocomposite , 2014 .
[76] Xiang‐qian Shen,et al. Microstructure, magnetic properties and exchange-coupling interactions for one-dimensional hard/soft ferrite nanofibers , 2012 .
[77] Y. Takemura,et al. AC Magnetic-Field-Induced Heating and Physical Properties of Ferrite Nanoparticles for a Hyperthermia Agent in Medicine , 2009, IEEE Transactions on Nanotechnology.
[78] N. Rezlescu,et al. Influence of calcium on properties of strontium and barium ferrites for magnetic media prepared by combustion , 2005 .