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Phase Switching as the Origin of Large Piezoelectric Response in Organic-Inorganic Perovskites: A First-Principles Study

机译:相位切换作为有机无机钙钛矿中大型压电反应的起源:第一原理研究

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摘要

Piezoelectrics are critical functional components of many practical applications such as sensors, ultrasonic transducers, actuators, medical imaging, and telecommunications. So far, the best performing piezoelectrics are ferroelectric ceramics, many of which are toxic, heavy, hard, and cost-ineffective. Recently, a groundbreaking discovery of extraordinarily large piezoelectric coefficients in the family of organic-inorganic perovskites gave a hope for a cheaper, environmentally friendly, inexpensive, light-weight, and flexible alternative. However, the origin of such a response in organic-inorganic ferroelectrics whose spontaneous polarization is an order of magnitude smaller than for inorganic counterparts remains unclear. In our study, we employ first-principles simulations to predict that the mechanism associated with large piezoelectric constants is of extrinsic origin and associated with switching between the stable phase and a previously overlooked energetically competitive metastable phase that can be stabilized by the external stress. The phase switching changes the polarization direction and therefore produces a large piezoelectric response similar to PbZr1-xTixO3 near the morphotropic phase boundary. The existence of such metastable phases is likely to manifest as the dynamical molecular disorder above the Curie temperature and therefore could be intrinsic to the entire family of organic-inorganic ferroelectrics with such disorder.
机译:压电是许多实际应用的关键功能组件,如传感器,超声波换能器,执行器,医学成像和电信。到目前为止,最好的表现压电是铁电陶瓷,其中许多有毒,重,硬,且成本无效。最近,有机 - 无机佩罗夫斯基斯家族中非常大的压电系数的开创性发现给了一种更便宜,环保,廉价,轻质和柔性替代方案的希望。然而,在自发极化的有机无机铁电池中这种响应的起源是小于无机对应物的数量级的数量级仍不清楚。在我们的研究中,我们采用了第一原理模拟来预测与大压电常数相关的机制是外在原点,并且与稳定相位和先前忽略的能量竞争亚稳态相之间的切换相关的机制,这些稳定性稳定性相位可以通过外部应力稳定。相位切换改变偏振方向,因此产生与Morphotopic相位边界附近的PBZR1-Xtixo3类似的大压电响应。这种亚稳定阶段的存在可能表现为高于居里温度的动态分子疾病,因此可以具有这种疾病的整个有机无机铁电池的内在。

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  • 来源
    《Physical review letters 》 |2020年第20期| 207601.1-207601.6| 共6页
  • 作者单位

    Univ S Florida Dept Phys Tampa FL 33620 USA|Bhabha Atom Res Ctr Glass & Adv Mat Div Mumbai 400085 Maharashtra India;

    Univ S Florida Dept Phys Tampa FL 33620 USA;

    Univ S Florida Dept Phys Tampa FL 33620 USA;

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