Vol. 5 (04) pp. 1414-1417 DOI: 10.21474/IJAR01/3958

STUDY OF CRYSTALLINE PARAMETERS AND DC ELECTRICAL CONDUCTIVITY OF LI-AL FERRITES.

  • Science College, Congress Nagar, Nagpur-12, Maharashtra, India.
10 Downloads 135 Views
Crossref

Abstract

M type lithium ferrites substituted by aluminium having general chemical formula Li0.5Fe0.5+xAl12-X O19 (where x = 1 to 6) were prepared by standard solid state reaction method The compounds are in single hexagonal phase without traces of uncertainly ambiguous reflection. From XRD pattern lattice parameters has recorded with increasing doped aluminium element in the range from a = 5.807 ? to 5.906 ? and c = 22.507 ? to 22.585 ? pertaining the space group P63/mmc (No.194). The mass density of the ferrites were found linearly varies and depends upon the mass and volume of sample. The X-Ray density has depends upon the lattice constant and molecular weight of the compounds. The average particle size was also estimated. Electrical properties such as dc conductivity, activation energy were studied. Also, the type of carriers responsible in each was determined from thermoelectric studies. The higher resistivity of the compounds Li0.5Fe0.5+xAl12-X O19 suggests less presence of mixed valence cations on equivalent lattice. While Fe show low value due to the ferrous ions present on the octahedral sites along with ferric ions.

Keywords

How to Cite This Article

Suresh. S. Darokar. (2017); STUDY OF CRYSTALLINE PARAMETERS AND DC ELECTRICAL CONDUCTIVITY OF LI-AL FERRITES., International Journal of Advanced Research (IJAR), 5 (04), 1414-1417, ISSN 2320-5407. DOI: https://doi.org/10.21474/IJAR01/3958

Corresponding Author

Suresh D.Darokar
Science College, Congress Nagar, Nagpur-12, Maharashtra, India

Article Analytics

References

  1. Beretea and T.Brown.Austral.,J.Chem.24(1971) 273
  2. Albanese, A Deriu, E.Luchini and G.Slokar.,Appli Phys A 2(1981) 45
  3. X.Gu, H.Y.Zang. H.R.Zhai, B.G.Slen, M.Lu, S.Y.Zhang and Y.Z.Maoi., J Phys State Sol 133 (1992) K83
  4. Hanmawalt (1936) International table for X-ray diffraction photograph
  5. Obrador, A Isalgue,A Collomb, A Tejeda, J.C.Joubert., J.,PhysC. 19(1986) 6605
  6. B.Ghare, A.P.B.Sinha., J.Phys Chem Solid 29(1958) 885
  7. Isalgue, A Laberta, J.Tejada, X Obradir., Appl.Phys A39(1986) 221
  8. S.Darokar, K.G.Rewatkar and D.K.Kulkarni., Mater Chem.Phys.56 (1998) 84-85
  9. Haneda, M. Kojima., J. Appl. Phys 14.B(1973) 3760
  10. Albense G, Carbulichhio and Deril A., J.Phys Solid State: A 23 (1974) 351
  11. Haneda, H.Kojima., Phys State Solid (A) 6(1971) 256
  12. Lipka,A. Gruskova, O.Orlicky, J.Siteck, M.Miglierini, R.Grone, M.Hud and Toth., Hyperfine Interaction 59(1990) 381.
  13. S.Darokar,K.G.Rewatkar and D.K.Kulkarni.,Indian J.Phys74A (2) (2000) 155-157
  14. S. Darokar et.al., J. Adv. Appl. Sci. Res, 2013, 4(1): 173-177
  15. Redrigue,Obradors X,Labrata A,Tejeja.J.Pernet M.M.Solid Paul and J.Tholente.,J.Phys Collog,149(1988) 119
  16. J. Verway J.H, De-Bar.,Pec.Trar.Chem Pay Bull 55 (1936)531
?

Similar Articles