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Title ZnO/Co-doped polyhistidine as an efficient bioelctrocatalyst for hydroxyl radical generation: Fabrication, characterization and application for microbial inactivation
Type JournalPaper
Keywords Bioelectrocatalyst Cobalt doped polyhistidine Hydroxyl radical Hydrogen peroxide E. coli
Abstract The hydroxyl radical (•OH) is a well-known powerful oxidizing agent that can react unselectively with the environmental contaminants. Electrochemical radical generation has been regarded as a promising choice to enable H2O2 formation and its converting to •OH. Here, by modifying of zinc oxide with cobalt doped polyhistidine (Co:pHis), we succeeded in fabricating a new, efficient, and stable bioelectrocatalyst for converting the two-electron water oxidation reaction (2e-WOR) product to • OH. The structural, morphological and electrochemical properties of fabricated bioelectrocatalyst were investigated by different characterization techniques. The functional groups of pHis increased the rate of 2e-WOR due to the formation of hydrogen bonding with H2O2. The presented bioelectrocatalyst gives an overpotential of 2.6 V (vs. RHE) at 0.2 mA/cm2 and peak Faradaic efficiency of 57% toward •OH generation. The electrogenerated • OH by the proposed new bioelectrocatalyst was successfully applied for the inactivation of E. coli (>95%) as a typical microbial contaminant.
Researchers Mojtaba Shamsipur (Fourth Researcher), Nozar Moradi (Third Researcher), Mahdi Hashemi (Second Researcher), (First Researcher)