Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7990414 | Journal of Alloys and Compounds | 2018 | 26 Pages |
Abstract
The Li3Mg2(Nb1-xSbx)O6 (0.02â¯â¤â¯xâ¯â¤â¯0.08) ceramics were prepared by partial substitution of Sb5+ on Nb5+ site for the first time. The effects of Sb5+ ion substitution on the microstructures and microwave dielectric properties were discussed in detail. The relationship between structural characteristics and dielectric properties of Li3Mg2(Nb1-xSbx)O6 ceramics was investigated based on the complex chemical bond theory. Synthesized via the solid-state reaction route, Li3Mg2(Nb1-xSbx)O6 ceramics exhibited excellent dielectric properties. With the increase of Sb5+ substitution amount, εr increased, Qâ¯Ãâ¯f values first went up then fell, and Ïf shifted for the positive direction. The bond ionicity, lattice energy and bond energy of Li3Mg2(Nb1-xSbx)O6 ceramics were employed to study the crystal structure and dielectric properties. Typically, the best dielectric properties with a εr of 15.79, Qâ¯Ãâ¯f value of 95,487â¯GHz and Ïf of â24.53â¯ppm/oC were obtained in Li3Mg2(Nb1-xSbx)O6 (xâ¯=â¯0.06) ceramics sintered at 1150â¯Â°C for 6â¯h.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Ping Zhang, Shanxiao Wu, Mi Xiao,