Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7921568 | Materials Chemistry and Physics | 2018 | 8 Pages |
Abstract
Herein we report the doping mechanism and impedance study of the Nb-substituted Bi3Ta1-xNbxO7 (0â¯â¤â¯xâ¯â¤â¯0.5) prepared via conventional solid-state method at 900â¯Â°C over 24â¯h. The substitutional solid solution crystallised in a cubic fluorite structure, space group Fm-3m and with lattice parameter, aâ¯=â¯bâ¯=â¯c, in the range 5.4477 (±0.0037)-5.4654 (±0.0011) Ã
. An insignificant unit cell expansion was observed with increasing Nb2O5 content and the linear correlation between lattice parameter and composition variable showed that the Vegard's Law was obeyed. Both TGA and DTA analyses confirmed that the Bi3Ta1-xNbxO7 solid solution was thermally stable as neither phase transition nor weight loss was observed within the studied temperature range, â¼28â¯Â°C-1000â¯Â°C. The electrical conductivities of these samples were found to increase with increasing Nb concentration; the Bi3Ta0.5Nb0.5O7 exhibited the highest conductivity, â¼1.2â¯Ãâ¯10â2â¯Sâ¯cmâ1 at 700â¯Â°C with a low activation energy of 1.03â¯eV.
Related Topics
Physical Sciences and Engineering
Materials Science
Electronic, Optical and Magnetic Materials
Authors
K. Firman, K.B. Tan, C.C. Khaw, Z. Zainal, Y.P. Tan, S.K. Chen,