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Dielectric and electrical properties of reduced graphene oxide paper after electron irradiation

机译:还原氧化石墨烯纸在电子辐照后的介电性能

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We present the results of a study of the dielectric and electrical properties of macroscopic reduced graphene oxide paper (RGOP) before and after 1 MeV electron irradiation with a low dose of 1.10(16) cm(-2). It was found that the Coulomb interaction affects the transport of charge carriers and causes their strong localization within graphene domains. The conductivity of the RGOP can be described by the charge carrier tunneling through a disordered graphene quantum dot array. It was shown that charge carrier localization length decreases from 5-8 nm to 1-2 nm after electron irradiation. Structural and electrical studies revealed that the irradiated sample demonstrates electrical conductivity higher than the initial one, despite the lower sp(2)-carbon fraction, the lower localization length, unchanged average size of graphene domains, and the higher defect states and functional groups content. The improvement in conductivity is also accompanied by an increase in the dielectric permittivity e from 5 for the initial RGOP to 35 after electron irradiation. The data obtained indicate that disordered regions can affect the electrical properties of reduced graphene oxide. Published under an exclusive license by AIP Publishing.
机译:我们提出的研究的结果介电和电特性宏观减少氧化石墨烯纸(RGOP)1兆电子伏电子辐照前后低剂量的1.10厘米(2)(16)。库仑相互作用影响的运输负责运营商和其强大的根源在石墨烯领域定位。电导率RGOP可以被描述的电荷载体通过无序隧道石墨烯量子点阵列。电荷载体定位长度减少5 - 8纳米电子辐照后1 - 2海里。结构和电气研究显示辐照样品展示了电电导率高于最初的一个,尽管sp(2)碳分数越低,低定位长度不变的平均大小石墨烯领域,更高的缺陷状态内容和功能基团。电导率也伴随着增加在介电常数e从5电子辐照后初始RGOP 35。获得的数据表明,无序地区可以影响的电气性能减少氧化石墨烯。独家许可证每年出版。

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