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Fundamentals of flexoelectricity in solids

机译:固体中的柔电基础知识

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The flexoelectric effect is the response of electric polarization to a mechanical strain gradient. It can be viewed as a higher-order effect with respect to piezoelectricity, which is the response of polarization to strain itself. However, at the nanoscale, where large strain gradients are expected, the flexoelectric effect becomes appreciable. Besides, in contrast to the piezoelectric effect, flexoelectricity is allowed by symmetry in any material. Due to these qualities flexoelectricity has attracted growing interest during the past decade. Presently, its role in the physics of dielectrics and semiconductors is widely recognized and the effect is viewed as promising for practical applications. On the other hand, the available theoretical and experimental results are rather contradictory, attesting to a limited understanding in the field. This review paper presents a critical analysis of the current knowledge on the flexoelectricity in common solids, excluding organic materials and liquid crystals.
机译:柔电效应是电极化对机械应变梯度的响应。相对于压电性,这可以看作是高阶效应,它是极化对应变本身的响应。然而,在预期大应变梯度的纳米级,柔电效应变得可观。此外,与压电效应相反,在任何材料中对称性都允许挠性电。由于这些特性,在过去的十年中,柔性电引起了越来越多的兴趣。目前,它在电介质和半导体物理中的作用已得到广泛认可,并且该作用被认为对实际应用很有希望。另一方面,可用的理论和实验结果相当矛盾,证明对该领域的了解有限。这篇综述文章对当前关于普通固体(不包括有机材料和液晶)中的柔性电的知识进行了批判性分析。

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