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Influence of atmospheric species on the electrical properties of functionalized graphene sheets

机译:大气种类对功能化石墨烯片电性能的影响

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We report on the time-dependent influence of atmospheric species on the electrical properties of functionalized graphene sheets (FGSs). When exposed to laboratory air, FGSs exhibit a significant, irreversible decrease in electrical conductance with time, strongly depending on the oxygen content of the FGSs. To separate the roles of charge carrier density and mobility in this aging process, we performed electron transport measurements using a back-gate field-effect transistor architecture. Investigating the position of the Dirac point under different atmospheres, we found that adsorbed atmospheric species result in pronounced p-doping, which – on a short time scale – can be reversed under nitrogen atmosphere. However, on a time scale of several days, the resistance increases irreversibly, while the Dirac point voltage remains constant. From these experiments, we conclude that the aging of FGSs is related to the chemisorption of atmospheric species leading to enhanced carrier scattering due to an increasing amount of sp ~(3) - regions and thus to a reduced charge carrier mobility.
机译:我们报告了大气物种对功能化石墨烯片(FGSs)的电性能的时间依赖性影响。当暴露于实验室空气中时,FGS的电导率会随时间显着不可逆地降低,这在很大程度上取决于FGS的氧含量。为了区分电荷载流子密度和迁移率在此老化过程中的作用,我们使用背栅场效应晶体管架构进行了电子传输测量。通过研究狄拉克点在不同气氛下的位置,我们发现吸附的大气物质会导致明显的p掺杂,在短时间范围内,可以在氮气氛下逆转。但是,在几天的时间范围内,电阻不可逆地增加,而狄拉克点电压保持恒定。从这些实验中,我们得出结论,由于sp〜(3)-区域的数量增加,FGS的老化与大气物质的化学吸附有关,从而导致载流子散射增强,从而导致电荷载流子迁移率降低。

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