ABSTRACT Bi 0.5 Na 0.84‐ x K 0.16 Li x 0.5 TiO 3 (BNKT‐ x Li) lead‐free piezoelectric ceramics were successfully prepared. The phase structure and domain engineering synergistic method were used to improve the piezoelectric properties, and the influence of Li + doping on its phase structure and electrical properties was studied. The ceramics are located at the MPB, in the process of introducing Li + , altering both the phase ratio and tetragonality (c T /a T ), as well as influencing grain size and leakage current. These factors together make ferroelectric and piezoelectric properties stronger. However, with the increase of Li + content, the long‐range ordered structure of ferroelectrics is disrupted, and the material gradually becomes a relaxation type, resulting in stronger electrostrain. Specifically, BNKT‐0Li exhibited a high depolarization temperature ( T d = 143.5°C), while BNKT‐0.045Li demonstrated optimal piezoelectric properties ( d 33 = 173 pC/N, T d = 111.8°C), the Curie temperature T m and dielectric constant ε max are 332.9°C and 4675°C, respectively. The variable temperature ferroelectric test found that the material gradually changed from a ferroelectric state to a relaxation state during temperature increase. The maximum electrostrain of BNKT‐0.045Li near T d can reach more than 0.3%, which maintains the high piezoelectric coefficient d 33 , and makes T d high enough, so that the operating temperature range of BNT ceramics is widened.
Dong et al. (Thu,) studied this question.