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van der Waals epitaxy for highly tunable all-inorganic transparent flexible ferroelectric luminescent films

机译:Van der Waals对高度可调的全无机透明柔性铁电发光薄膜外延

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Ferroelectric luminescent materials with more unique requirements, such as high-speed, low-cost, and low-power, and being light-weight, all-inorganic, transparent, flexible and wearable, are of great demand for future smart device applications. Here, we report the direct fabrication of highly flexible and transparent Eu-doped 0.94Bi(0.5)Na(0.5)TiO(3)-0.06BaTiO(3) epitaxial thin films on mica substrates via van der Waals epitaxy. The photoluminescence switching of the films exhibits no noticeable decay after being flexed in or out to 2 mm radius for 10(4) cycles, revealing the robust functionality against mechanical bending. Furthermore, we demonstrate that the photoluminescence intensity can be greatly enhanced by the bending-induced mechanical strain either in the tensile or compressive state, with a striking giant gauge factor of 3580. This work illustrates the role of MICAtronics, i.e., van der Waals epitaxy on mica, in designing all-inorganic flexible ferroelectric luminescent thin films with highly controllable optical properties for application in tunable transparent wearable memory devices, sensors and displays.
机译:铁电发光材料具有更独特的要求,如高速,低成本和低功耗,并轻轻,无机,透明,灵活,可穿戴,对未来的智能设备应用有很大的需求。在这里,我们通过van der Waals外延报告通过van der Waals外延的高度柔性且透明的Eu-掺杂的0.94bi(0.5)掺杂的0.94bi(0.5)na(0.5) - TiO(3)-0.06batio(3)外延薄膜。薄膜的光致发光切换在弯曲或向外弯曲到10毫米半径之后没有明显的衰减,揭示了抗机械弯曲的鲁棒功能。此外,我们证明了通过在拉伸或压缩状态下的弯曲诱导的机械应变可以大大提高光致发光强度,具有醒目的巨大量计因子为3580.这项工作说明了Micatronics的作用,即van der Waals外延在云母上,在设计全无机柔性铁电发光薄膜时,具有高度可控的光学性能,可用于可调谐透明可穿戴存储器装置,传感器和显示器。

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