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A wafer-scale graphene and ferroelectric multilayer for flexible and fast-switched modulation applications

机译:圆片规模石墨烯和铁电多层柔性和快速交换调制的应用程序

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摘要

Here we report a wafer-scale graphene/P(VDF-TrFE)/graphene multilayer for light-weight, flexible and fast-switched broadband modulation applications. The P(VDF-TrFE) film not only significantly reduces the sheet resistance of graphene throughout heavy doping of similar to 0.8 x 10(13) cm(-2) by nonvolatile ferroelectric dipoles, but also acts as an efficient electro-optic (EO) layer. Such multilayered structural integration with remarkable ferroelectric polarization, high transparency (>90%), low sheet resistance (similar to 302 Omega square(-1)), and excellent mechanic flexibility shows the potential of a flexible modulation application over a broad range of wavelengths. Moreover, the derived device also exhibits strong field-induced EO modulation even under bending and one large Pockels coefficient (similar to 54.3 pm V-1) is obtained. Finally, the graphene and ferroelectric hybrid demonstrates a fast switching time (similar to 2 mu s) and works well below low sheet resistance level over a long time. This work gives insights into the potential of graphene and ferroelectric hybrid structures, enabling future exploration on next-generation high-performance, flexible transparent electronics and photonics.
机译:这里我们报告一个圆片规模graphene / P (vdf - tfe)以外的graphene冻害for轻量级、灵活和快速交换宽带调制的应用程序。P (VDF-TrFE)电影不仅可以显著减少石墨烯在沉重的薄层电阻掺杂的类似于0.8 x 10(13)厘米(2)非易失性铁电偶极子,而且行为作为一个高效的光电(EO)层。多层结构集成非凡的铁电极化,高透明度(> 90%),低表面电阻(类似于302ω的平方(1)),和优秀的显示了潜在的机械灵活性灵活调制应用广泛的波长范围。设备也表现出强烈的磁场诱导光电调制即使在弯曲和一个大的泡克耳斯系数(类似于54.3 pm与它们)获得的。混合演示了一个快速的开关时间(类似于2μs),远低于低薄层电阻水平在很长一段时间。工作给洞察的潜力石墨烯和铁电混合动力结构,使下一代未来的探索高性能、灵活透明的电子和光子。

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