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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Reduced graphene oxide preparation and its applications in solution-processed write-once-read-many-times graphene-based memory device
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Reduced graphene oxide preparation and its applications in solution-processed write-once-read-many-times graphene-based memory device

机译:石墨烯氧化物制剂及其在溶液加工写入一次读取多倍石墨烯的存储器件中的应用

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We fabricated graphene-based non-volatile memory device by solution-processed route in this work. Thermally reduced graphene oxide (rGO) on quartz substrate prepared in the ambient of acetylene/hydrogen plasma treatment was used as bottom conductive electrode to replace the commonly-used bottom conductive indium-tin-oxide layer. The morphology of the rGO film was characterized and used for device fabrication. The device was fabricated in the simple structure of silver nanowires/nanocomposite/ rGO/quartz and the nanocomposite was prepared by mixing the graphene quantum dots and graphene oxide in ethanol. Current-voltage (I-V) measurement of the fabricated device shows current bistablity with the similar behavior as write-once-read-many-times (WORM) memory device. The ON/OFF ratio of the current bistability for the devices was as large as 1 x 10(3) with retention stability up to 1 x 10(4) s. The direct tunnelling, trapped-charge limited-current, and Ohmic conduction were proposed as dominant conduction mechanisms through the fabricated NVM devices based on the obtained IeV characteristics. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们在这项工作中通过解决方案处理的路线制造了基于石墨烯的非易失性存储器件。在乙炔/氢等离子体处理的环境中制备的石英基板上的热还原石墨烯氧化物(RGO)用作底部导电电极以替代常用的底部导电铟 - 氧化锡层。 Rgo膜的形态表征并用于器件制造。该装置在银纳米线/纳米复合材料/ rgo /石英的简单结构中制造,通过将石墨烯量子点和乙醇中的石墨烯氧化物混合来制备纳米复合材料。制造设备的电流电压(I-V)测量显示了当前的双结构,其具有与写入读取多次(WORM)存储器件类似的行为。器件的电流双稳态的开/关比大至1×10(3),保持稳定性高达1×10(4)秒。通过基于所获得的IEV特性,提出了通过制造的NVM器件的主导传导机制的直接隧道,捕获电荷限制电流和欧姆传导。 (c)2017 Elsevier Ltd.保留所有权利。

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