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首页> 外文期刊>Journal of thermal analysis and calorimetry >Elastic and anelastic relaxations accompanying relaxor ferroelectric behaviour of Ba6GaNb9O30 tetragonal tungsten bronze from resonant ultrasound spectroscopy
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Elastic and anelastic relaxations accompanying relaxor ferroelectric behaviour of Ba6GaNb9O30 tetragonal tungsten bronze from resonant ultrasound spectroscopy

机译:Ba6GaNb9O30四方钨青铜的弛豫铁电行为伴随的弹性和非弹性弛豫

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摘要

Tetragonal tungsten bronze (TTB) structures offer some promise as lead-free ferroelectrics and have an advantage of great flexibility in terms of accessible composition ranges due to the number of crystallographic sites available for chemical substitution. The ferroic properties of interest are coupled with strain, which will be important in the context of stability, switching dynamics and thin film properties. Coupling of strain with the ferroelectric order parameter gives rise to changes in elastic properties, and these have been investigated for a ceramic sample of Ba6GaNb9O30 (BGNO) by resonant ultrasound spectroscopy. Room temperature values of the shear and bulk moduli for BGNO are rather higher than for TTBs with related composition which are orthorhombic at room temperature, consistent with suppression of the ferroelectric transition. Instead, a broad, rounded minimum in the shear modulus measured at similar to 1 MHz is accompanied by a broad rounded maximum in acoustic loss near 115 K and signifies relaxor freezing behaviour. Elastic softening with falling temperature from room temperature, ahead of the freezing interval, is attributed to the development of dynamical polar nanoregions (PNRs), whilst the nonlinear stiffening below similar to 115 K is consistent with a spectrum of relaxation times for freezing of the PNR microstructure.
机译:四方钨青铜(TTB)结构有望成为无铅铁电体,并且由于可用于化学取代的晶体学位点的数量,在可触及的成分范围方面具有很大的灵活性。感兴趣的铁素体特性与应变有关,这在稳定性,转换动力学和薄膜特性方面将非常重要。应变与铁电有序参数的耦合会引起弹性性质的变化,并且已通过共振超声光谱对Ba6GaNb9O30(BGNO)的陶瓷样品进行了研究。 BGNO的剪切模量和体积模量的室温值要比具有相关成分的TTB(室温下为正交晶)的室温值高得多,这与抑制铁电跃迁相一致。取而代之的是,在类似于1 MHz时测得的剪切模量的宽舍入的最小值,伴随着115 K附近的声损耗的宽舍入的最大值,并表示弛张器冻结行为。室温下从冷冻温度下降的弹性软化,要早于冻结间隔,这归因于动态极性纳米区域(PNR)的发展,而低于115 K的非线性刚性则与冻结PNR的弛豫时间频谱一致微观结构。

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