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Inhibition of Electrocatalytic O2 Reduction of Functional CcO Models by Competitive Non-Competitive and Mixed Inhibitors

机译:通过竞争性竞争性和混合抑制剂功能CCO型号的电O2减少的抑制

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摘要

Electrocatalytic reduction of O2 by functional CcO models is studied in the presence of several known inhibitors like CO, N3, CN and NO2. These models successfully reproduce the inhibitions observed in CcO at similar concentrations reported for these inhibitors. Importantly, the data show very different electrochemical responses depending on the nature of the inhibitor i.e. competitive, non-competitive, mixed, etc. Chemical models have been provided for these observed differences in the electrochemical behavior. Using the benchmark electrochemical behaviors for known inhibitors, the inhibition by NO2 is investigated. Electrochemical data suggests that NO2 acts as a competitive inhibitor. Spectroscopic data suggests that NO released during oxidation of the reduced catalyst in presence of excess NO2 is the source of the competitive inhibition by NO2. Presence of the distal CuB lowers the inhibitory effect of CN and NO2. While for CN it weakens its binding affinity to the reduced complex by ~ 4.5 times, for NO2, it allows regeneration of the active catalyst from a catalytically inactive, air stable ferrous nitrosyl complex via a proposed superoxide mediated pathway.

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