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Large Non-linear Piezoelectric Effect Due to Recoverable Domain Switching

机译:可恢复域切换带来的大非线性压电效应

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Linear piezoelectricity is known to be caused by the coupling of polarization to the lattice deformation, so that an external stress can cause a small change in polarization through lattice deformation. Such an effect is linear but weak in principle. In many cases piezoelectric materials may endure high stresses, which can cause partial domain switching. Such domain switching can contribute in a significant way to an enhanced piezoelectric effect. However, the enhancement is meaningful only when the domain switching is reversible; otherwise the piezoelectric effect would suffer degradation during cycling. In theory it seems unlikely to achieve a reversible domain switching because different domain states are energetically identical and there is no inherent driving force for a reversible domain switching. In the present study, we report a large non-linear piezoelectric effect due to a reversible domain switching in an aged acceptor-containing BaTiO3 ceramic. Compared with the linear piezoelectricity of d33 ~ 100pC/N, the non-linear piezoelectricity showed an equivalent d33 of 200pC/N at high stress. We suggest that this non-linear effect originates from the reversible non- 180o domain switching, driven by a symmetry conforming tendency of point defects (oxygen vacancies). Our work may provide new insight into the understanding and utilization of the enhanced piezoelectricity at high stress.
机译:已知线性压电是由极化与晶格变形的耦合引起的,因此外部应力可通过晶格变形引起极化的小变化。这种影响是线性的,但原则上是微弱的。在许多情况下,压电材料可能会承受高应力,这可能会导致部分磁畴切换。这种域切换可以显着地有助于增强压电效应。但是,仅当域切换是可逆的时,增强才有意义。否则,压电效应将在循环过程中退化。从理论上讲,似乎不可能实现可逆的域切换,因为不同的域状态在能量上是相同的,并且对于可逆的域切换没有固有的驱动力。在本研究中,我们报告了一个大的非线性压电效应,这是由于在含老化受体的BaTiO3陶瓷中存在可逆的畴切换。与d33〜100pC / N的线性压电相比,非线性压电在高应力下的等效d33为200pC / N。我们建议这种非线性效应是由点缺陷(氧空位)的对称顺应性趋势驱动的,是可逆的非180o域转换。我们的工作可能会为在高应力下增强压电性的理解和利用提供新的见识。

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