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Resistive switching behavior of reduced graphene oxide memory cells for low power nonvolatile device application

机译:低功耗非易失性器件应用中还原氧化石墨烯存储单元的电阻切换行为

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摘要

Graphene Oxide (GO) based low cost flexible electronics and memory cell have recently attracted more attention for the fabrication of emerging electronic devices. As a suitable candidate for resistive random access memory technology, reduced graphene oxide (RGO) can be widely used for non-volatile switching memory applications because of its large surface area, excellent scalability, retention, and endurance properties. We demonstrated that the fabricated metal/RGO/metal memory device exhibited excellent switching characteristics, with on/off ratio of two orders of magnitude and operated threshold switching voltage of less than 1 V. The studies on different cell diameter, thickness, scan voltages and period of time corroborate the reliability of the device as resistive random access memory. The microscopic origin of switching operation is governed by the establishment of conducting filaments due to the interface amorphous layer rupturing and the movement of oxygen in the GO layer. This interesting experimental finding indicates that device made up of thermally reduced GO shows more reliability for its use in next generation electronics devices.
机译:基于氧化石墨烯(GO)的低成本柔性电子产品和存储单元最近在新兴电子设备的制造中引起了更多关注。作为电阻式随机存取存储器技术的合适候选者,由于氧化石墨烯(RGO)的大表面积,出色的可扩展性,保持力和耐用性,它可以广泛用于非易失性开关存储器应用。我们证明了所制造的金属/ RGO /金属存储器件具有出色的开关特性,开/关比为两个数量级,并且工作阈值开关电压小于1V。研究了不同的电池直径,厚度,扫描电压和时间周期证实了该设备作为电阻性随机存取存储器的可靠性。开关操作的微观起源是由于界面非晶层的破裂和GO层中氧气的运动而引起的导电细丝的建立所决定的。这个有趣的实验发现表明,由热还原GO制成的设备在下一代电子设备中的使用显示出更高的可靠性。

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