Electrochemical Behaviour Of Uranium At A Tripolyphosphate Modified Ito Electrode

CHEMICAL COMMUNICATIONS(2021)

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摘要
UO22+ binds to the surface of a tripolyphosphate modified mesoporous indium tin-doped oxide electrode (nanoITO|P-3). Electrochemical studies reveal that nITO|P-3 electrodes catalyze the 2-electron interconversion between UO22+ and U4+ with the P-3-ligand assisting in the rate-limiting proton-coupled reduction of U(v) to U(iv), based on the kinetic isotope effect (1.8). Product composition between nITO|P-3(U4+) and surface adsorbed UO2 can be controlled by adjusting the proton concentration and/or scan rate in voltammograms. These studies with uranium suggest that nITO|P-3 electrodes are good candidates for redox transformations with other actinides including neptunium, plutonium, and americium.
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