• Title of article

    nanopore electrochemistry: a nexus for molecular control of electron transfer reactions

  • Author/Authors

    Fu ، K. - University of Notre Dame , Bohn ، P.W. - University of Notre Dame

  • Pages
    10
  • From page
    20
  • To page
    29
  • Abstract
    Pore-based structures occur widely in living organisms. Ion channels embedded in cell membranes, for example, provide pathways, where electron and proton transfer are coupled to the exchange of vital molecules. Learning from mother nature, a recent surge in activity has focused on artificial nanopore architectures to effect electrochemical transformations not accessible in larger structures. Here, we highlight these exciting advances. Starting with a brief overview of nanopore electrodes, including the early history and development of nanopore sensing based on nanopore-confined electrochemistry, we address the core concepts and special characteristics of nanopores in electron transfer. We describe nanopore-based electrochemical sensing and processing, discuss performance limits and challenges, and conclude with an outlook for next-generation nanopore electrode sensing platforms and the opportunities they present.
  • Journal title
    ACS Central Science
  • Serial Year
    2018
  • Journal title
    ACS Central Science
  • Record number

    2447777