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Flexible organic bistable devices based on graphene embedded in an insulating poly(methyl methacrylate) polymer layer

机译:基于嵌入绝缘聚(甲基丙烯酸甲酯)聚合物层中的石墨烯的柔性有机双稳态器件

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摘要

The electrical properties of flexible nonvolatile organic bistable devices (OBDs) fabricated with graphene sandwiched between two insulating poly(methyl methacrylate) (PMMA) polymer layers were investigated. Current-voltage (I-V) measurements on the Al/PMMA/graphene/PMMA/indium-tin-oxide/poly(ethylene terephthalate) devices at 300 K showed a current bistability due to the existence of the graphene, indicative of charge storage in the graphene. The maximum ON/OFF ratio of the current bistability for the fabricated OBDs was as large as 1 × 10~7, and the endurance number of ON/OFF switchings was 1.5 × 10~5 cycles, and an ON/OFF ratio of 4.4 × 10~6 was maintained for retention times larger than 1 × 10 ~5 s. No interference effect was observed for the scaled-down OBDs containing a graphene layer. The memory characteristics of the OBDs maintained similar device efficiencies after bending and were stable during repetitive bendings of the OBDs. The mechanisms for these characteristics of the fabricated OBDs are described on the basis of the I-V results.
机译:研究了用石墨烯夹在两个绝缘聚甲基丙烯酸甲酯(PMMA)聚合物层之间制成的柔性非易失性有机双稳态器件(OBD)的电性能。在300 K的Al / PMMA /石墨烯/ PMMA /铟锡氧化物/聚对苯二甲酸乙二酯器件上进行电流-电压(IV)测量表明,由于石墨烯的存在,电流双稳性表明电荷存储在石墨烯中。石墨烯。制成的OBD的双稳态电流的最大导通/截止比为1×10〜7,开/关开关的耐久性数为1.5×10〜5个周期,导通/关比为4.4×保持10〜6的保留时间大于1×10〜5 s。对于含有石墨烯层的按比例缩小的OBD,未观察到干扰作用。弯曲后,OBD的存储特性保持相似的器件效率,并且在重复弯曲OBD期间保持稳定。基于I-V结果描述了制造的OBD的这些特性的机制。

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