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Nonvolatile rewritable memory effects in graphene oxide functionalized by conjugated polymer containing fluorene and carbazole units

机译:含芴和咔唑单元的共轭聚合物官能化的氧化石墨烯中的非易失性可重写存储效应

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摘要

A new polymer, poly[{9,9-di(triphenylamine)fluorene}(9,9-dihexylfluorene) (4-aminophenylcarbazole)] (PFCz) was synthesized and used in a reaction with graphene oxide (GO) containing surface-bonded acyl chloride moieties to give a soluble GO-based polymer material GO-PFCz. A bistable electrical switching effect was observed in an electronic device in which the GO-PFCz film was sandwiched between indium-tin oxide (ITO) and Al electrodes. This device exhibited two accessible conductivity states, that is, a low-conductivity (OFF) state and a high-conductivity (ON) state, and can be switched to the ON state under a negative electrical sweep; it can also be reset to the initial OFF state by a reverse (positive) electrical sweep. The ON state is nonvolatile and can withstand a constant voltage stress of -1 V for 3 h and 10~8 read cycles at -1 V under ambient conditions. The nonvolatile nature of the ON state and the ability to write, read, and erase the electrical states, fulfill the functionality of a rewritable memory. The mechanism associated with the memory effects was elucidated from molecular simulation results and in-situ photoluminescence spectra of the GO-PFCz film under different electrical biases.
机译:合成了一种新的聚合物,聚[{9,9-二(三苯胺)芴}(9,9-二己基芴)(4-氨基苯基咔唑)](PFCz),并将其与含有表面键合的氧化石墨烯(GO)进行反应酰基氯部分得到可溶的GO基聚合物材料GO-PFCz。在将GO-PFCz膜夹在铟锡氧化物(ITO)和Al电极之间的电子设备中,观察到了双稳态电开关效应。该器件表现出两个可访问的电导率状态,即低电导率(OFF)状态和高电导率(ON)状态,并且可以在负电扫频下切换到ON状态;也可以通过反向(正)电扫描将其重置为初始OFF状态。导通状态是非易失性的,在环境条件下,在-1 V下可承受-1 V的恒定电压应力3小时,并在-1 V时可承受10〜8个读取周期。接通状态的非易失性以及写入,读取和擦除电状态的能力满足了可重写存储器的功能。从分子模拟结果和GO-PFCz薄膜在不同电偏压下的原位光致发光光谱阐明了与记忆效应相关的机制。

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