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首页> 外文期刊>Electroanalysis >Electrochemical Behaviour of HOPG and CVD-Grown Graphene Electrodes Modified with Thick Anthraquinone Films by Diazonium Reduction
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Electrochemical Behaviour of HOPG and CVD-Grown Graphene Electrodes Modified with Thick Anthraquinone Films by Diazonium Reduction

机译:重氮醌还原厚蒽醌膜修饰的HOPG和CVD生长石墨烯电极的电化学行为

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摘要

Highly oriented pyrolytic graphite (HOPG) and graphene grown on Ni (Ni-Gra) or Cu (Cu-Gra) by chemical vapour deposition were modified with thick anthraquinone (AQ) films (7-60 nm) by redox grafting of the pertinent diazonium salt. Glassy carbon (GC) electrodes were used for comparison. The AQ-modified GC electrodes showed excellent blocking properties towards the Fe(CN)_6~(3-/4-) redox probe, although it was noted that in the case of Ni-Gra and Cu-Gra, the blocking ability depended strongly on the underlying substrate. Oxygen reduction studies revealed good electrocatalytic activity of AQ-modified HOPG, Ni-Gra, and Cu-Gra, compared with the bare electrodes.
机译:通过相关重氮鎓的氧化还原接枝,在厚的蒽醌(AQ)膜(7-60 nm)上修饰了通过化学气相沉积法在Ni(Ni-Gra)或Cu(Cu-Gra)上生长的高取向热解石墨(HOPG)和石墨烯。盐。玻碳(GC)电极用于比较。 AQ修饰的GC电极对Fe(CN)_6〜(3- / 4-)氧化还原探针表现出出色的阻隔性能,尽管注意到在Ni-Gra和Cu-Gra的情况下,阻隔能力强烈依赖于在下面的基板上。氧还原研究表明,与裸电极相比,AQ改性的HOPG,Ni-Gra和Cu-Gra具有良好的电催化活性。

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