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The BiFE was prepared in-situ on the surface of a supporting glassy carbon electrode.
The SbFE was prepared ex situ on a supporting glassy carbon electrode and employed in direct square-wave voltammetric mode.
A bismuth film electrode (BiFE) prepared ex-situ on a supporting glassy carbon electrode exhibited convenient electroanalytical performance for voltammetric measurement of selected aminosalycilate drugs.
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Carbon supports (glassy carbon and Vulcan XC72 powder) were modified by electrochemical and spontaneous grafting of phenylsulfonic acid (PSA) or trifluoromethylphenyl (TFMP) groups via diazonium ion reduction.
Vapor deposition method is used to prepare layered Pd Cu bimetallic films, with different thickness of Pd over a Cu film supported on glassy carbon.
This work is devoted to the investigation of the kinetics of potential-controlled deposition of Pt, at low (below 10 μg cm−2) metal loadings, on non-porous carbon supports (glassy carbon and highly oriented pyrolytic graphite), from Pt (II) and Pt (IV) precursor complexes, and the structure and the morphology of the ensuing deposits.
A self-assembled bilayer lipid-like membrane (BLM) supported on glassy carbon electrode (GCE) was fabricated using 5,5-ditetradecyl-2- 2-trimethyl-ammonioethyl -1,3-dioxane bromide (DTDB) for epinephrine (EP) determination in the presence of ascorbic acid (AA).
Pd MoOx catalysts supported on glassy carbon electrode were co-deposited using cyclic voltammetry.
Different composition, thickness and structure of CoNi thin films supported on glassy carbon were prepared by electrochemical codeposition.
Iron cuboid nanoparticles supported on glassy carbon (denoted nm-Fe/GC) were prepared by electrochemical deposition under cyclic voltammetric (CV) conditions.
Palladium bismuth films supported on glassy carbon substrates were prepared by cathodic electrodeposition of palladium ad subsequent adsorption of bismuth species on the electrode surface.
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