Mostafa M, Alrowaili Z A, Rashwan G M, Gerges M K
Physics Department, College of Science, Jouf University, Sakaka, Saudi Arabia.
Laser Tech. & Environment Lab., Physics Department, Faculty of Science, South Valley University, Qena, 83523 Egypt.
Heliyon. 2020 Feb 10;6(2):e03389. doi: 10.1016/j.heliyon.2020.e03389. eCollection 2020 Feb.
The sol-gel method was used to prepare perovskite type (Pb La□)TiO (PLT) ceramics with x = 0.21, 0.22, 0.23, 0.24, 0.25 in order to investigate their structural, optical, and dielectric properties. The crystallite compounds were obtained by calcinating the mixture of PbCO, TiO, and LaO at 1000 °C for different time periods. After 4 h annealing, PLT23 sample, approximately a very little secondary phases have been observed in the XRD spectrum of the PLT sample with 23% La content (PLT23). The presence of La dopants might have affected the tetragonality of the Lead titanate crystal structure. The PLT samples tolerance factor decreases from 0.991 as in x = 0.21 to 0.986 for x = 0.25. Hence, these structures tend, generally, to be in the perovskite phase as t ~ 1. In the doped ceramics, characteristic phase transitions were shifted to lower temperatures. The dielectric permittivity value showed the tendency of a slight increase with lanthanum addition and achieved its maximum ε (3649) at x = 0.23, then it decreases for higher concentrations of La. The samples' estimated average crystallite size ranged from 40 nm to 50 nm, the maximum crystallite size about (49.6 nm) at x = 0.23 La. The calculated bandgaps were 3.1, 3.26, 3.28, 3.08, and 3.12 for the PLT with 0.21, 0.22, 0.23,0.24 and 0.25% La, respectively. The Curie constant C was obtained as the slope of the curve of the inverse values of ε vs. temperature. The highest C value (5.2 × 10 K) was measured for the 23% La sample. The sample with 23% La content appears to be notably distinguished in its structural, optical, and dielectric characteristics compared with other samples.
采用溶胶-凝胶法制备了钙钛矿型(PbLa□)TiO(PLT)陶瓷,其中x = 0.21、0.22、0.23、0.24、0.25,以研究其结构、光学和介电性能。通过在1000℃下煅烧PbCO、TiO和LaO的混合物不同时间段来获得微晶化合物。经过4小时退火后,在La含量为23%的PLT样品(PLT23)的XRD谱图中观察到大约非常少量的第二相。La掺杂剂的存在可能影响了钛酸铅晶体结构的四方性。PLT样品的容忍因子从x = 0.21时的0.991降至x = 0.25时的0.986。因此,这些结构通常倾向于处于钙钛矿相,因为t ~ 1。在掺杂陶瓷中,特征相变向较低温度移动。介电常数的值显示出随着镧添加而略有增加的趋势,并在x = 0.23时达到最大值ε(3649),然后对于更高浓度的La它会降低。样品估计的平均微晶尺寸范围为40nm至50nm,在x = 0.23 La时最大微晶尺寸约为(49.6nm)。对于La含量为0.21%、0.22%、0.23%、0.24%和0.25%的PLT,计算得到的带隙分别为3.1、3.26、3.28、3.08和3.12。居里常数C作为ε的倒数与温度曲线的斜率获得。对于23% La的样品测量到最高的C值(5.2×10 K)。与其他样品相比,La含量为23%的样品在其结构、光学和介电特性方面表现出明显的差异。