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Correlation between defect density in mechanically milled graphite and total oxygen content of graphene oxide produced from oxidizing the milled graphite

机译:机械研磨后的石墨中的缺陷密度与氧化研磨后的石墨所产生的氧化石墨烯的总氧含量之间的相关性

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摘要

It has been reported that defect density in ball-milled graphite lattice increases with the milling time. Guided by this, we hypothesized that the oxygen content of graphene oxide can be substantially enhanced by oxidizing ball-milled graphite and also, the oxygen content would monotonically increase with the milling time as the defect sites would be preferred sites for oxidation. Interestingly, we observed that this correlation was not directly proportional for all milling hours. Even though, the defect density of graphite monotonically increased with milling time, the oxygen content of graphene oxide initially increased and then decreased. This was due to milling time dependent change in the size of the graphite plates and consequent relative abundance of the different oxygen containing functional groups on graphene oxide (GO) produced from the milled graphite.
机译:据报道,球磨石墨晶格中的缺陷密度随研磨时间而增加。以此为指导,我们假设可以通过氧化球磨的石墨来显着提高氧化石墨烯的氧含量,并且氧含量会随着研磨时间而单调增加,因为缺陷部位将是优选的氧化部位。有趣的是,我们观察到这种相关性并非在所有铣削时间内都成正比。即使石墨的缺陷密度随研磨时间单调增加,但氧化石墨烯的氧含量先增加后减少。这是由于与研磨时间有关的石墨板尺寸的变化,以及由研磨后的石墨生产的氧化石墨烯(GO)上不同含氧官能团的相对相对丰度。

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