Publications
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. Electrical and Magnetic Properties of Nanocrystalline BiFeO3 Prepared by High Energy Ball Milling and Microwave Sintering. Journal of Nanoscience and Nanotechnology. 2011;11:4097–4102.
. Enhanced mangnetoelectric voltage in multiferroic particulate Ni0. 83Co0. 15Cu0. 02Fe1. 9O4-delta/PbZr0. 52Ti0. 48O3 composites-dielectric, piezoelectric and magnetic properties. Current Applied Physics. 2009;9:1134–1139.
. Enhanced mangnetoelectric voltage in multiferroic particulate Ni 0.83 Co 0.15 Cu 0.02 Fe 1.9 O 4-$δ$/PbZr 0.52 Ti 0.48 O 3 composites-dielectric, piezoelectric and magnetic properties. Current Applied Physics. 2009;9:1134–1139.
. Magnetoelectric effect of (100-x) BaTiO 3–(x) NiFe 1.98 O 4 (x= 20–80. Applied Physics Letters. 2009;94:112902–112902.
. Spark plasma sintered Sm2Co17 – FeCo nanocomposite permanent magnets synthesized by high energy ball milling. NanoTechnology. 2008;19:335701(1-7).
. Spark plasma sintered Sm2Co17–FeCo nanocomposite permanent magnets synthesized by high energy ball milling. Nanotechnology. 2008;19:335701.
. STRUCTURAL, ELECTRICAL AND MAGNETIC PROPERTIES OF NANOSIZED NI-CO FERRITE PREPARED BY HIGH ENERGY BALL MILLINGT. TRANSACTIONS OF POWDER METALLURGY ASSOCIATION OF INDIA. 2008.
. Internal friction and longitudinal modulus behaviour of multiferroic PbZr 0.52 Ti 0.48 O 3+ Ni 0.93 Co 0.02 Mn 0.05 Fe 1.95 O 4-$δ$ particulate composites. Journal of Physics D: Applied Physics. 2007;40:7565–7572.
. Internal friction and longitudinal modulus behaviour of multiferroic PbZr0. 52Ti0. 48O3+ Ni0. 93Co0. 02Mn0. 05Fe1. 95O4- $δ$ particulate composites. Journal of Physics D: Applied Physics. 2007;40:7565.
