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Fabrication and Characterisation of the First Graphene Ring Micro Electrodes (GRIMEs)

机译:第一个石墨烯环微电极的制造和表征(GRIME)

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We report the fabrication and characterisation of the first graphene ring micro electrodes, formed by dip coating fibre optics with subsequently reduced graphite oxide. The behaviour of the so-formed Graphene RIng Micro Electrodes (GRIMEs) is studied using the ferricyanide probe redox system while electrode thicknesses is assessed using established electrochemical methods. A ring electrode of ~73 nm thickness is produced on 220 μm diameter fibre optics, corresponding to an inner to outer radius ratio of >0.999, so allowing for use of extant analytical descriptions of very thin ring micro electrodes in data analysis. GRIMEs are highly reliable (current response invariant over >3000 scans) with the microring design allowing for efficient use of electrochemically active graphene edge sites. Further, the associated nA scale currents neatly obviate issues relating to the high resistivity of undoped graphene. Thus, the use of graphene in ring micro electrodes improves the reliability of existing micro electrode designs and expands the range of use of graphene-based electrochemical devices.
机译:我们报告了第一石墨烯环微电极的制造和表征,由浸涂纤维光学器件形成,随后的氧化石墨氧化物。使用铁氰化物探针氧化还原系统研究了所形成的石墨烯环微电极(GRIME)的行为,而使用已建立的电化学方法评估电极厚度。在220μm直径的光纤上产生〜73nm厚的环电极,对应于> 0.999的内半径比,因此允许在数据分析中使用非常薄的环形微电极的延时分析描述。 GRIMES是高度可靠的(当前响应不变过度> 3000扫描),具有散热设计,允许有效地使用电化学活性石墨烯缘位点。此外,相关的NA级别电流整洁地避免了与未掺杂石墨烯的高电阻率有关的问题。因此,在环形微电极中使用石墨烯可提高现有微电极设计的可靠性,并扩大石墨烯基电化学装置的使用范围。

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