Effect of sintering temperature on the structure of composites based on spinel and perovskite
Abstract
Magnetoelectric composites of 0.6(Ni0.7Zn0.3Fe2O4) / 0.4((Na, Li, Sr)NbO3 + MnO2) are prepared by conventional ceramic technology. The effect of composite sintering temperature on their phase composition and structure is studied. It is stated that the composites obtained are two phase systems (perovskite and spinel). It is established that modulation of spinel structure is shown more accurately at low sintering temperatures (1180˚C), while modulation of perovskite structure is shown at high temperatures (1220˚C). The discovered modulations of perovskite and spinel structures are assumed be connected with extended defects such as crystallographic shear planes. Increasing composite sintering temperature (Tsint. 1200˚C) was shown to lead to the disappearance of an impurity phase and the change of perovskite phase composition.
About the Authors
M. V. TalanovRussian Federation
344090 Rostov-on-Don.
L. A. Shilkina
Russian Federation
344090 Rostov-on-Don.
V. M. Talanov
Russian Federation
346428, Novocherkassk.
N. P. Shabelskaya
Russian Federation
346428, Novocherkassk.
L. A. Reznichenko
Russian Federation
344090 Rostov-on-Don.
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Review
For citations:
Talanov M.V., Shilkina L.A., Talanov V.M., Shabelskaya N.P., Reznichenko L.A. Effect of sintering temperature on the structure of composites based on spinel and perovskite. Nanosystems: Physics, Chemistry, Mathematics. 2013;4(6):844-850.