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Comparative study of glassy carbon as an electrode material

Hari Gunasingham, Bernard Fleet

Open publisher page 63 citations

Abstract

There have often been contradications reported in regard to the efficacy of glassy carbon in voltammetric applications. The problem stems from the fact that there are a large variety of carbons available from various manufacturers that vary in their bulk structure, particularly in the degree of compactness. The extent of compactness affects both the bulk and surface properties of glassy carbon. The latter has a bearing on the formation of surface carbon-oxygen functionalities, which influence the electrochemical response of the carbon.

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What this paper is about

There have often been contradications reported in regard to the efficacy of glassy carbon in voltammetric applications. The problem stems from the fact that there are a large variety of carbons available from various manufacturers that vary in their bulk structure, particularly in the degree of compactness. The extent of compactness affects both the bulk and surface properties of glassy carbon. The latter has a bearing on the formation of surface carbon-oxygen functionalities, which influence the electrochemical response of the carbon.

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OpenAlex reports 63 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

There have often been contradications reported in regard to the efficacy of glassy carbon in voltammetric applications. The problem stems from the fact that there are a large variety of carbons available from various manufacturers that vary in their bulk structure, particularly in the degree of compactness. The extent of compactness affects both the bulk and surface properties of glassy carbon. The latter has a bearing on the formation of surface carbon-oxygen functionalities, which influence the electrochemical response of the carbon.

Key concepts: Glassy carbon, Carbon fibers, Electrochemistry, Materials science, Electrode, Chemical engineering, Nanotechnology, Cyclic voltammetry

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