Exceptional piezoelectric performance originating from the development of distinct domains under AC electric field
Abstract
Piezoelectric performance is closely linked to domain configuration evolution, and domain morphologies are significantly different under alternating current poling (ACP) and direct current poling (DCP). Herein, we investigate the domain evolution of the Pb(Mg1/3Nb2/3)O3-PbTiO3-Sm ceramics under ACP and DCP. ACP-poled samples exhibit a piezoelectric coefficient (d33 ∼ 870 ± 20 pC/N) and dielectric constant (ε33T/ε0 ∼ 6030 ± 100), representing increases of 109% and 115%, respectively, compared to DCP-poled samples. Through ACP, distinct textured domain structures are rapidly formed and stably maintained. Specifically, these domain structures have narrower domain walls and prominent spidery strip-like domains, and these features are observed via scanning electron microscopy and piezoresponse force microscopy. In contrast, DCP samples have interleaved lath-, island-, and stripe-like domains. This direct visualization of ACP-specific domain textures and their correlation to enhanced performance clarifies the critical role of domain evolution. Meanwhile, ACP significantly shortens poling time, offering an efficient strategy for domain engineering and performance optimization of piezoceramics.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
Peng Peng
Xi Feng
MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, GBRCE for Functional Molecular Engineering, School of Chemistry
Tao Chen
Rongshan Zhou
College of Big Data and Information Engineering, Guizhou University , Guiyang 550025,
Qingquan Xiao
Industry and Education Combination Innovation Platform of Intelligent Manufacturing and Graduate Joint Training Base, College of Big Data and Information Engineering, Guizhou University 1 , Guiyang 550025,
Li Zhang
Fangfang Zeng
College of Big Data and Information Engineering, Guizhou University , Guiyang 550025,