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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Graphene Oxides Exhibit Limited Cathodic Potential Window Due to Their Inherent Electroactivity
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Graphene Oxides Exhibit Limited Cathodic Potential Window Due to Their Inherent Electroactivity

机译:氧化石墨烯因其固有的电活性而显示出有限的阴极电位窗口

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Graphene oxides are considered to show great promise for the construction of high-performance electrochemical devices for sensing and energy storage applications. Herein, we show that, despite the advantages of graphene oxides, such as facile preparation in bulk quantities and enhanced electrochemical performances, these electrode materials, namely, graphene oxide, chemically reduced graphene oxide, and graphite oxide, show very limited potential windows in the cathodic region because of their inherent electroactivity. This has a profound influence on the use of these materials in electrochemical devices when the cathodic part of the electrochemical window for the reduction of electrolytes is required. The highly limited electrochemical window of these graphene oxides must be taken into account in the construction of new electrochemical devices working in the cathodic region.
机译:石墨烯氧化物被认为对用于传感和能量存储应用的高性能电化学装置的构造显示出巨大的希望。在此,我们表明,尽管氧化石墨烯具有许多优点,例如易于制备和增强的电化学性能,但这些电极材料,即氧化石墨烯,化学还原的氧化石墨烯和氧化石墨,在电极中的电势窗口非常有限阴极区,因为其固有的电活性。当需要用于减少电解质的电化学窗口的阴极部分时,这对这些材料在电化学装置中的使用具有深远的影响。在构造在阴极区域中工作的新电化学装置时,必须考虑这些石墨烯氧化物的高度有限的电化学窗口。

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