Issue 26, 2014

Enhanced piezoelectric and mechanical properties of AlN-modified BaTiO3 composite ceramics

Abstract

BaTiO3xAlN (BT–xAlN) composite ceramics were prepared by conventional solid state reaction sintering. The effects of the AlN content on the crystalline structures, densities, and electrical and mechanical properties of the BT ceramics were investigated. The BT–1.5%AlN ceramic exhibits a good piezoelectric constant of 305 pC N−1 and an improved Vickers hardness of 5.9 GPa. The enhanced piezoelectricity originates from interactions between defect dipoles and spontaneous polarization inside the domains due to the occurrence of local symmetry, caused by the preferential distribution of the Al3+–N3− pairs vertical to the c axis. The hardening of the material is attributed to the improved density, and particle and grain boundary strengthening. Our work indicates that if a suitable doping ion pair is designed, lead-free ceramic systems prepared from ordinary raw materials by a conventional sintering method have a high probability of exhibiting good piezoelectric and mechanical properties simultaneously.

Graphical abstract: Enhanced piezoelectric and mechanical properties of AlN-modified BaTiO3 composite ceramics

Article information

Article type
Paper
Submitted
24 Feb 2014
Accepted
30 Mar 2014
First published
31 Mar 2014

Phys. Chem. Chem. Phys., 2014,16, 13078-13085

Enhanced piezoelectric and mechanical properties of AlN-modified BaTiO3 composite ceramics

D. Xu, L. Wang, W. Li, W. Wang, Y. Hou, W. Cao, Y. Feng and W. Fei, Phys. Chem. Chem. Phys., 2014, 16, 13078 DOI: 10.1039/C4CP00796D

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