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Electric field-induced phase transitions and composition-driven nanodomains in rhombohedral-tetragonal potassium-sodium niobate-based ceramics

机译:电场诱导的菱形 - 四方钾 - 铌酸钠陶瓷中的相变和组成驱动纳米弥散

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摘要

The mechanisms behind the high piezoelectricity of (K,Na)NbO3-based lead-free ceramics were investigated, including electric field-induced phase transitions and composition-driven nanodomains. The construction of a rhombohedral-tetragonal (R-T) phase boundary, confirmed using several advanced techniques, allowed a large piezoelectric constant (d33) of 450 ± 5 pC/N to be obtained in (1-x)K0.4Na0.6Nb0.945Sb0.055O3-xBi0.5Na0.5(Hf1-ySny)O3 (0 ≤ x ≤ 0.06 and 0 ≤ y ≤ 0.5) ceramics possessing an ultralow ΔUT-R of 7.4 meV. More importantly, the existence of an intermediate phase, i.e., the electric-induced phase (EIP), bridging the rhombohedral R [Ps//(111)] and tetragonal T [Ps//(001)] phases during the polarization rotation was demonstrated. Striped nanodomains (∼40 nm) that easily responded to external stimulation were also observed in the ceramics with an R-T phase. Thus, the enhanced piezoelectric properties originated from EIP and the striped nanodomains.
机译:研究了(k,Na)NbO3的无铅陶瓷的高压电性的机制,包括电场诱导的相转变和组成驱动的纳米染色瘤。使用几种先进技术确认菱形 - 四方(RT)相边界的构建,允许在(1-x)K0.4Na0.6n0.6n0.945sb0中获得450±5 pc / n的大压电常数(d33) .05503-xbi0.5na0.5(Hf1-ysny)O3(0≤x≤0.06和0≤y≤0.5)陶瓷,具有7.4 mev的超低Δut-r。更重要的是,在极化旋转期间,存在中间相,即桥接菱形r [ps //(111)]和四边形t [ps //(001)]阶段的中间相,即电诱导的相(EIP)是相位的展示。在具有R-T相的陶瓷中也观察到容易响应外部刺激的条纹纳米型(〜40nm)。因此,增强的压电性能来自EIP和条纹纳米型。

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