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Quinuclidinium salt ferroelectric thin-film with duodecuple-rotational polarization-directions

机译:具有十二指肠-旋转极化方向的喹啉鎓盐铁电薄膜

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摘要

Ferroelectric thin-films are highly desirable for their applications on energy conversion, data storage and so on. Molecular ferroelectrics had been expected to be a better candidate compared to conventional ferroelectric ceramics, due to its simple and low-cost film-processability. However, most molecular ferroelectrics are mono-polar-axial, and the polar axes of the entire thin-film must be well oriented to a specific direction to realize the macroscopic ferroelectricity. To align the polar axes, an orientation-controlled single-crystalline thin-film growth method must be employed, which is complicated, high-cost and is extremely substrate-dependent. In this work, we discover a new molecular ferroelectric of quinuclidinium periodate, which possesses six-fold rotational polar axes. The multi-axes nature allows the thin-film of quinuclidinium periodate to be simply prepared on various substrates including flexible polymer, transparent glasses and amorphous metal plates, without considering the crystallinity and crystal orientation. With those benefits and excellent ferroelectric properties, quinuclidinium periodate shows great potential in applications like wearable devices, flexible materials, bio-machines and so on.
机译:铁电薄膜对于它们在能量转换,数据存储等方面的应用是非常需要的。与常规铁电陶瓷相比,分子铁电由于其简单,低成本的薄膜加工性能而被认为是更好的选择。然而,大多数分子铁电体是单极轴的,并且整个薄膜的极轴必须很好地定向于特定方向才能实现宏观铁电。为了对准极轴,必须采用取向控制的单晶薄膜生长方法,该方法复杂,成本高并且非常依赖衬底。在这项工作中,我们发现了一种新的分子高铁奎宁酸高铁酸盐,它具有六倍的旋转极轴。多轴特性使得高碘酸奎宁环金薄膜可以简单地在包括柔性聚合物,透明玻璃和非晶态金属板的各种基板上制备,而无需考虑结晶度和晶体取向。凭借这些优点和出色的铁电性能,高碘酸奎宁环铵在可穿戴设备,柔性材料,生物机械等应用中显示出巨大潜力。

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