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Phase evolution and origin of the high piezoelectric properties in lead-free BiFeO3-BaTiO3 ceramics

机译:无铅BIFEO3-BATIO3陶瓷中高压电性能的相位演化与起源

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La-substitution effects for Be3+-site in 0.7Bi(1.)(03(1)(-x)())La(x)FeO(3)-0.3BaTiO(3) (abbreviated as BF3OBT-100xLF with x = 0.00, 0.01, 0.035, 0.06, 0.07 and 0.10) ceramics were investigated systematically. All ceramics were synthesized by a conventional solid-state reaction method and quenched in water from its sintering temperature. The crystal structure Rietveld refinement shows that undoped BF3OBT ceramic exhibited dominant rhombohedral (R) symmetry and gradually changed to the tetragonal (T) phase with La-doping. However, for x >= 0.07 compositions the lattice distortions (c(T)/a(T) and 90 degrees - alpha(R)) significantly decrease as a result crystal structures become close to the cubic-like (CL) phase. Hence, two different morphotropic phase boundaries (MPBs) were reported for BF3OBT-100xLa ceramic system; one MPB-I between the R and T phases and the other MPB-II between T and CL phases. The largest direct piezoelectric coefficient (d(33) = 274 pC/N) with a high Curie temperature (T-c = 532 degrees C) for BF3OBT-1LF composition was obtained due to the typical MPB-I between R and T phases. However, a maximum electric field-induced strain (S-max = 0.27%) with a high converse piezoelectric coefficient (d(33)* = 500 pm/V) for BF3OBT-7LF ceramic was mainly attributed to the MPB-II of T + CL phases and soft ferroelectric switching properties.
机译:在0.7bi(1.)(03(1)(03(1)(03(1)(03)(03)(03)(03)(03)(x)Feo(3)-0.3batio(3)中(缩写为bf3obt-100xlf,x =系统地研究了0.00,0.01,0.035,0.06,0.07和0.10)陶瓷。通过常规固态反应方法合成所有陶瓷,并从其烧结温度下淬灭水中。晶体结构RIETVELD细化表明,未掺杂的BF3OBT陶瓷显示出显性的菱形(R)对称性并逐渐改变为具有LA-掺杂的四方(T)相。然而,对于x> = 0.07组合物,晶格失真(C(t)/ a(t)和90度 - α(r)显着降低,因为结果晶体结构变得靠近立方样(Cl)相。因此,报道了BF3Obt-100xLA陶瓷系统的两种不同的Morphopic相界(MPBs);在R和T阶段之间的一个MPB-I和T和CL相之间的其他MPB-II。由于R和T相之间的典型MPB-1,获得具有高居里温度(T-C = 532℃)的最大直接压电系数(D(33)= 274pc / n)。然而,具有高逆转压电系数(D(33)* =500μm/ v)的最大电场诱导的菌株(S-max = 0.27%用于BF3obt-7LF陶瓷的陶瓷主要归因于T的MPB-II + CL相和软铁电切换性能。

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