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    Role of hydroxyl radicals and mechanism of escherichia coli inactivation on Ag/AgBr/TiO2 nanotube array electrode under visible light irradiation

    Access Status
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    Authors
    Hou, Y.
    Li, Xin Yong
    Zhao, Q.
    Chen, G.
    Raston, C.
    Date
    2012
    Type
    Journal Article
    
    Metadata
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    Citation
    Hou, Y. and Li, X.Y. and Zhao, Q. and Chen, G. and Raston, C. 2012. Role of hydroxyl radicals and mechanism of escherichia coli inactivation on Ag/AgBr/TiO2 nanotube array electrode under visible light irradiation. Environmental Science and Technology. 46 (7): pp. 4042-4050.
    Source Title
    Environmental Science and Technology
    DOI
    10.1021/es204079d
    ISSN
    0013-936X
    School
    Department of Chemical Engineering
    URI
    http://hdl.handle.net/20.500.11937/18158
    Collection
    • Curtin Research Publications
    Abstract

    A ternary Ag/AgBr/TiO2 nanotube array electrode with enhanced visible-light activity was synthesized by a two-step approach including electrochemical process of anodization and an in situ photoassisted deposition strategy. The dramatically enhanced photoelectrocatalytic activity of the composite electrode was evaluated via the inactivation of Escherichia coli under visible light irradiation (λ>420 nm), whose performance of complete sterilization was much superior to other reference photocatalysts. PL, ESR, and radicals trapping studies revealed hydroxyl radicals were involved as the main active oxygen species in the photoelectrocatalytic reaction. The process of the damage of the cell wall and the cell membrane was directly observed by ESEM, TEM, and FTIR, as well as further confirmed by determination of potassium ion leakage from the killed bacteria. The present results pointed to oxidative attack from the exterior to the interior of the Escherichia coli by OH•, O2•–, holes and Br0, causing the cell to die as the primary mechanism of photoelectrocatalytic inactivation.

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