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A Review on Thermal Exfoliation of Graphene Oxide

机译:氧化石墨烯的热剥落研究进展

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摘要

Exfoliation, i.e. individual separation of carbon sheets, is of great interest to produce single-layered graphene nanosheets. Chemical or thermal treatments are popular approaches to exfoliate graphite chunks. In general, these conventional methods are assisted with intercalation via covalent or non-covalent functionalization, expansion, and swelling, adsorption of organic molecules in gas phase, solid nanoparticle insertion or direct molecular exfoliation. However, direct covalent modification of graphene is challenging and the zero-band gap of graphene limits its use in field-effect transistors in nanoelectronics. Therefore, the use of a band-gap tunable p-type semiconducting reduced graphene oxide (rGO) is an alternative route. There are several approaches to tune its band gap, including tailoring the chemistry. Critical parameters include the control of oxygen amount determined by the degree and time of oxidation and reduction conditions (e. g. temperature), often leading to nonstoichiometry. This short review therefore highlights the production of rGO focusing primarily on the effect of thermal treatmenton the nature and the role of oxygen during thermal exfoliation of GO. The impact of oxygen functionalization on the modulation of the band gap is also reviewed for chemically and thermally reduced GO, as well as chemically treated rGO followed by a thermal exfoliation.
机译:剥离,即碳片的单独分离,对于生产单层石墨烯纳米片非常重要。化学或热处理是剥落石墨块的流行方法。通常,这些常规方法通过共价或非共价官能化,膨胀和溶胀,气相中有机分子的吸附,固体纳米颗粒的插入或直接的分子剥落来辅助插层。然而,石墨烯的直接共价修饰具有挑战性,并且石墨烯的零带隙限制了其在纳米电子学中的场效应晶体管中的使用。因此,使用带隙可调的p型半导体还原氧化石墨烯(rGO)是替代方法。有几种方法可以调节其带隙,包括定制化学反应。关键参数包括由氧化程度和时间以及氧化条件和还原条件(例如温度)决定的氧气量控制,这常常导致化学计量不合理。因此,本篇简短的评论重点介绍了rGO的生产,主要关注热处理对GO热剥离过程中氧的性质和作用的影响。氧功能化对带隙调制的影响也进行了审查,以化学和热还原GO,以及化学处理的rGO,然后进行热剥离。

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