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Facile preparation of active glassy carbon electrodes with activated carbon and organic solvents

机译:用活性炭和有机溶剂方便地制备活性玻璃碳电极

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Pre treatment of glassy carbon (GG) electrodes with 2-propanol, acetonitrile, or cyclohexane had a significant effect on electrode kinetics, adsorption, and capacitance, Reagent grade solvents slowed electron transfer rates for dopamine, ascorbic acid, Fe3+/2+, and Fe(CN)(6)(3-/4-) and decreased adsorption of anthraquinone-2,6-disulfonate (AQDS) and methylene blue (IMB), However, if activated carbon (AC) was present in the solvent during pretreatment, the result was increased electron transfer rates and adsorption for several commonly studied redox systems. The large surface area of AC acts as a "getter" for solvent impurities and for species desorbed from the GC surface, leading to a carbon electrode surface with higher capacitance, higher adsorption of AQDS and MB, and faster electron-transfer rates for Fe(CN)(6)(3-/4-), dopamine, and ascorbic acid, In addition, the treated surfaces were more reproducible, and aged electrodes were reactivated by AC in 2-propanol. The results imply that large, polar organic impurities are present on the polished GC surface which are removed by the combination of an organic solvent and activated carbon. These impurities contain oxygen detectable by XPS and appear to be weakly catalytic toward the Fe3+/2+ redox system. [References: 27]
机译:用2-丙醇,乙腈或环己烷对玻璃碳(GG)电极进行预处理会对电极动力学,吸附和电容产生重大影响,试剂级溶剂降低了多巴胺,抗坏血酸,Fe3 + / 2 +和Fe(CN)(6)(3- / 4-)并降低2,6-二磺酸蒽醌(AQDS)和亚甲基蓝(IMB)的吸附,但是,如果在预处理过程中溶剂中存在活性炭(AC) ,结果是提高了几种常用氧化还原系统的电子传输速率和吸附率。 AC的大表面积充当溶剂杂质和从GC表面解吸的物质的“吸气剂”,从而导致碳电极表面具有更高的电容量,更高的AQDS和MB吸附力以及更快的Fe的电子传输速率( CN)(6)(3- / 4-),多巴胺和抗坏血酸,此外,处理过的表面更具有重现性,并且老化的电极在2-丙醇中被AC活化。结果表明,在抛光的GC表面上存在大量极性有机杂质,这些杂质可通过有机溶剂和活性炭的组合去除。这些杂质包含XPS可检测到的氧,并且似乎对Fe3 + / 2 +氧化还原系统的催化作用较弱。 [参考:27]

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