Improvement in electrical and energy storage properties of lead-free BNKT-BT piezoceramics is licensed under a
Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 Thailand License.
The electrical characteristics and energy storage performance of BNKT-BT lead-free piezoceramics were examined. All ceramics were produced via the mixed oxide technique. The findings indicated that the density of this ceramic system varied between 5.61 and 5.83 g/cm3. Conditions with 2.0 mol% (BT=0.02) and 6.0 mol% (BT=0.06) exhibited the largest dielectric constant (er) at both ambient temperature and elevated temperature, with values of 1307 and 4272, respectively. The ceramic sample with BT = 0.06 exhibited the highest values of %strain ~0.13 and a d*33 ~179.65 pm/V. Furthermore, BT-doped ceramics yielded optimal energy storage densities compared to undoped BNKT ceramics. The sample containing 4.0 mol% (BT=0.04) reached the maximum energy storage density (W ~0.31 J/cm3) with an energy storage efficiency (η ~ 37.89%).