Magnetic properties of composite (1-x)BiFeO3-xBa5PrTi3V7O30

Authors

  • Hage Doley Department of Physics, Dera Natung Government College, Itanagar-791113, Arunachal Pradesh.

DOI:

https://doi.org/10.56405/dngcrj.2020.05.01.09

Keywords:

Ferroelectrics, Hysteresis, VSM, Multiferroic

Abstract

Ceramic composite of (1-x)BiFeO3-xBa5PrTi3V7O30 with different x values are prepared by using high-temperature solid-state reaction technique. Magnetic measurement is done at low temperature by PPMS Vibrating Sample Magnetometer which shows that the magnetization is maximum for x=0.3

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References

Spaldin, N.A., Cheong, S.W., Ramesh, R. (2010). Multiferroics: Past, present, and future. Physics Today, 63 (10), 38.

Kumar, M. M., Palkar, V. R., Srinivas, K. and Suryanarayana, S. V. (2000), Ferroelectricity in a pure BiFeO3 ceramic. Applied Physics Letters, 76 (19), 2764-2766.

Doley, H., Swain, P.K., Panigrahi, A., Tado, G.T. (2019). Study of structural and ferroelectric properties of the composite Ba5RTi3V7O30 (R=Pr, Tb). Bulletin of Pure and Applied Sciences – Physics, 38(2), 65–72.

Doley, H., Swain, P.K., Panigrahi, A., Tado, G.T. (2020). Structural and ferroelectric properties in the solid solution (Ba5RTi3V7O30)x(BiFeO3)1-x. Ferroelectrics, 568, 104.

Doley, H., Panigrahi, A., Chakraborty, P. (2019). Study of electrical and magnetic properties of multiferroic composite (BiFeO3)x(Ba5RTi3V7O30)1-x. In: Satapathy, S., Bhateja, V., Somanah, R., Yang, X.S., Senkerik, R. (eds) Information Systems Design and Intelligent Applications. Advances in Intelligent Systems and Computing, vol 862. Springer, Singapore.

Doley, H., Swain, P.K., Panigrahi, A. (2020). Modulating the magnetic properties of BiFeO3 by addition of Ba5TbTi3V7O30. Processing and Application of Ceramics, 14 (4), 277-281.

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Published

2020-12-30

How to Cite

Doley, H. (2020). Magnetic properties of composite (1-x)BiFeO3-xBa5PrTi3V7O30. Dera Natung Government College Research Journal, 5(1), 68–71. https://doi.org/10.56405/dngcrj.2020.05.01.09

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