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- W2009228981 abstract "Nanocrystalline CoNi alloy is synthesized using sol–gel technique having average size ∼8.5 and ∼12nm. High-resolution transmission electron microscopy confirms absence of any oxide phase at the grain boundary. We observe multifunctionality ascribed to large loop shift after the field-cooling and saturation magnetization (MS) depending on interparticle interaction in CoNi alloy embedded in SiO2 matrix. A large loop shift 1.2 kOe is noticed at 5 K for 10.5% volume fraction (ϕ). The loop shift decreases with increasing temperature and vanishes around ∼210K where a maximum is observed in zero-field-cooled magnetization. The loop shift decreases with decreasing ϕ and vanishes at ϕ=0.01%. Interestingly, MS increases with decreasing ϕ and value at ϕ=0.01% approaches to the calculated value of MS for the bulk counterpart. A model has been proposed with ferromagnetic-core and disordered magnetic-shell structure to interpret the results." @default.
- W2009228981 created "2016-06-24" @default.
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- W2009228981 date "2011-08-01" @default.
- W2009228981 modified "2023-10-18" @default.
- W2009228981 title "Multifunctional properties of CoNi alloy embedded in the SiO2 host: Role of interparticle interaction" @default.
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- W2009228981 doi "https://doi.org/10.1016/j.jssc.2011.06.038" @default.
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