Articles

type: Journal
Title DOI Date
Structural and magnetic properties of Co2CrAl Heusler allos prepared by mechanical alloying #
Preparation and investigation of electrical and electrochemical properties of lanthanum-based cathode for solid oxidefuel cell #
magnetic and structural properties of Ni/Nio nanoparticles prepared Using nickel acetate and polyvinil acetate precursor #
the effect of grain boundaries on the domain wall dynamics in Pr1-xAgxMnO3 manganites #
STRUCTURAL AND MAGNETOELASTIC PROPERTIES OF Y3Fe27.2Cr1.8 AND Ce3Fe25Cr4 FERROMAGNETIC COMPOUNDS #
The Effect of Barium Doping on the Selective Structure of Bi-2223 Phase #
effect of annealing treatment on the magnetic properties of mechanochemical synthesized La0.8 Pb0.2 MnO3 manganites #
Reentrant spin glass behavior in La0 8Sr0 2Mn1-xTixO3 manganites #
SuperparamagneticbehaviorofLa0.67Sr0.33MnO3 nanoparticlespreparedvia #
Electerical conductivity of epitaxial La0.6Sr0.4Co0.2Fe0.8O3-x thin films grown by pulsed laser deposion #
the structural and magnetic properties of one-step mechanochemical route synthesized La0.8Pb0.2MnO3 manganites #
Fabrication and investigation of electrochemical characterization of Ba based Chatode #
Ferromagnetic insulating and reentrant spin glass behavior in Mg doped La0.75Sr0.25MnO3 manganites #
Prepration and investigation of electrical and electorchemical properties of Lanthanum based chathode for solid oxide fuel cell #
Structural magnetic and magnetotransport properties of La0.8 Sr0.2 Mn O3 /xLaMnO3 composites #
The Effect of Precursor Powder Size on the Microstructure and Intergranular Properties of (Bi Pb)2 Sr2 Ca2 Cu3 Oy Superconductors #
AC susceptibility study of Bi1.66Pb0.34Sr2Ca2?xMgxCu3Oy (x=0, 0.2 and 0.4) superconductor systems 10.1016/j.jallcom.2007.04.043
The Effect of Precursor Powder Size on the Microstructure and Intergranular Properties of (Bi Pb)2Sr2Ca2Cu3Oy Superconductors #
Influence of Si and Co substitutions on magnetoelastic properties of R2Fe17 ( R Y Er and Tm ) intermetallic compounds #
AC susceptibility study of Bi1.66Pb0.34Sr2Ca2 xMgxCu3Oy(x 0 0.2 and 0.4) superconductor systems #