Accès libre

Dielectric relaxation and study of electrical conduction mechanism in BaZr0.1Ti0.9O3 ceramics by correlated barrier hopping model

À propos de cet article

Citez

[1] LEE W.H., SU C.Y., J. Am. Ceram. Soc., 90 (2007), 3345. Search in Google Scholar

[2] OHARA Y., KOUMOTO K., YANAGIDA H., J. Am. Ceram. Soc., 68 (1985), 108. Search in Google Scholar

[3] PARK J.H., KAWAKAMI Y., SUZUKI M., AKEDO J., Jpn. J. Appl. Phys., 50 (2011), 09ND19. Search in Google Scholar

[4] TANG P., TOWNER D.J., MEIER A.L., WESSELS B.W., Appl. Phys. Lett., 85 (2004), 4615. Search in Google Scholar

[5] FARHI R., MARSSI M., SIMON A., RAVEZ J., Eur. Phys. J. B., 9 (1999), 599. Search in Google Scholar

[6] DELUCA M., VASILESCU C.A., IANCULESCU A.C., BERGER D.C., CIOMAGA C.E., CURECHERIU L.P., STOLERIU L., GAJOVIC A., MITOSERIU L., GALASSI C., J. Eur. Ceram. Soc., 32 (2012), 3551. Search in Google Scholar

[7] TANG X.G., CHEW K.H., CHAN H.L.W., Acta. Mater., 52 (2004), 5177. Search in Google Scholar

[8] MOURA F., SIMÕES A.Z., AGUIAR E.C., NOGUEIRA I.C., ZAGHETE M.A., VARELA J.A., LONGO E., J. Alloy. Compd., 479 (2009), 280. Search in Google Scholar

[9] BHASKAR R.S., PRASAD R.K., RAMACHANDRA R.M.S., J. Alloy. Compd., 509 (2011), 1266. Search in Google Scholar

[10] BHASKAR R.S., PRASAD R.K., RAMACHANDRA R.M.S., J. Alloy. Compd., 481 (2009), 692. Search in Google Scholar

[11] SATEESH P., OMPRAKASH J., KUMAR G.S., PRASAD G., J. Adv. Dielectr., 5 (2015), 1550002. Search in Google Scholar

[12] NATH K.A., PRASAD K., Adv. Mater. Res., 2 (2012), 115. Search in Google Scholar

[13] KANG B.S., CHOI S.K., PARK C.H., J. Appl. Phys., 94 (2003), 1904. Search in Google Scholar

[14] ANG C., YU Z., CROSS L.E., Phys. Rev. B., 62 (2000), 228. Search in Google Scholar

[15] RODRIGUEZ-CARVAJAL J., An introduction to the program FullProf 2000, Laboratoire Léon Brillouin (CEACNRS) CEA/Saclay, France, 2001. Search in Google Scholar

[16] FERRARI M., LUTTEROTTI L., J. Appl. Phys., 76 (1994), 7246. Search in Google Scholar

[17] HSIAO Y.J., CHANG Y.H., FANG T.H., CHANG Y.S., Appl. Phys. Lett., 87 (2005), 142906. Search in Google Scholar

[18] JAWAHAR K., CHOUDHARY R.N.P., Solid State Commun., 142 (2007), 449. Search in Google Scholar

[19] PRASAD A., BASU A., Mater. Lett., 66 (2012), 1. Search in Google Scholar

[20] DUTTA A., BHARTI C., SINHA T.P., Mater. Res. Bull., 43 (2008), 1246. Search in Google Scholar

[21] FUNKE K., Prog. Solid State Chem., 22 (1993), 111. Search in Google Scholar

[22] JONSCHER A.K., Nature, 267 (1977), 673. Search in Google Scholar

[23] CHEN W., ZHU W., TAN O.K., CHEN X.F., J. Appl. Phys., 108 (2010), 034101. Search in Google Scholar

[24] PELAIZ-BARRANCO A., GUTIERREZ-AMADOR M.P., HUANOSTA A., VALENZUELA R., Appl. Phys. Lett., 73 (1998), 2039. Search in Google Scholar

[25] ALMOND D.P., BOWEN C.R., Phys. Rev. Lett., 92 (2004), 157601. Search in Google Scholar

[26] ISHII T., ABE T., SHIRAI H., Solid State Commun., 127 (2003), 737. Search in Google Scholar

[27] ELLIOTT S.R., Adv. Phys., 36 (1987), 135. Search in Google Scholar

[28] YOUSSEF A.A.A., Z. Naturforsch., 57a (2002), 263. Search in Google Scholar

[29] LONG A.R., Adv. Phys., 31 (1982), 553. Search in Google Scholar

[30] IMRAN Z., RAFIQ M.A., AHMAD M., RASOOL K., BATOOL S.S., HASAN M.M., AIP Adv., 3 (2013), 032146. Search in Google Scholar

[31] PRASAD K., BHAGAT S., AMARNATH K., CHOUDHARYS.N., YADAV K.L., Mater. Sci.-Poland, 28 (2010), 317. Search in Google Scholar

[32] SUBOHI O., KUMAR G.S., MALIK M.M., KURCHANIA R., J. Mater. Sci.-Mater. Electron., 26 (2015), 9342. Search in Google Scholar

[33] JONSCHER A.K., J. Mater. Sci., 16 (1981), 2037. Search in Google Scholar

[34] VERDIER C., MORRISON F.D., LUPASCU D.C., SCOTT J.F., J. Appl. Phys., 97 (2005), 024107. Search in Google Scholar

[35] SMYTH D.M., J. Electroceram., 11 (2003), 89. Search in Google Scholar

[36] MOOS R., HÄRDTL K.H., J. Appl. Phys., 80 (1996), 393. Search in Google Scholar

eISSN:
2083-134X
Langue:
Anglais