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Epitaxial Growth of Thin Ferroelectric Polymer Films on Graphene Layer for Fully Transparent and Flexible Nonvolatile Memory

机译:石墨烯层上铁电聚合物薄膜的外延生长,用于完全透明和柔性的非易失性存储器

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Enhancing the device performance of organic memory devices while providing high optical transparency and mechanical flexibility requires an optimized combination of functional materials and smart device architecture design. However, it remains a great challenge to realize fully functional transparent and mechanically durable nonvolatile memory because of the limitations of conventional rigid, opaque metal electrodes. Here, we demonstrate ferroelectric nonvolatile memory devices that use graphene electrodes as the epitaxial growth substrate for crystalline poly(vinylidene fluoride-trifluoroethylene) (PVDF-TrFE) polymer. The strong crystallographic interaction between PVDF-TrFE and graphene results in the orientation of the crystals with distinct symmetry, which is favorable for polarization switching upon the electric field. The epitaxial growth of PVDF-TrFE on a graphene layer thus provides excellent ferroelectric performance with high remnant polarization in metal/ferroelectric polymer/metal devices. Furthermore, a fully transparent and flexible array of ferroelectric field effect transistors was successfully realized by adopting transparent poly[bis(4-phenyl)(2,4,6-trimethylphenyl)amine] semi-conducting polymer.
机译:在提供高光学透明度和机械灵活性的同时,提高有机存储设备的设备性能需要功能材料和智能设备体系结构设计的优化组合。然而,由于传统的刚性,不透明金属电极的局限性,实现功能齐全的透明且机械耐用的非易失性存储器仍然是巨大的挑战。在这里,我们演示了使用石墨烯电极作为晶体聚偏二氟乙烯-三氟乙烯(PVDF-TrFE)聚合物的外延生长衬底的铁电非易失性存储器件。 PVDF-TrFE和石墨烯之间的强晶体学相互作用导致晶体具有明显的对称性取向,这有利于电场极化转换。因此,PVDF-TrFE在石墨烯层上的外延生长提供了出色的铁电性能,在金属/铁电聚合物/金属器件中具有很高的残留极化。此外,通过采用透明的聚[双(4-苯基)(2,4,6-三甲基苯基)胺]半导体聚合物,成功实现了铁电场效应晶体管的全透明和柔性阵列。

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