Skip to content
Furst Lab
Furst Lab
  • Home
  • People
  • Research
    • Human Health
    • Environmental Remediation
    • Sustainability
  • Publications
  • Values
  • In Action
  • Contact

Two-Electrode Platforms for Protein Biosensing based on Charge Transport through the DNA Double Helix,” Electroanalytical Chemistry

2017 August

Two-Electrode Platforms for Protein Biosensing based on Charge Transport through the DNA Double Helix,” Electroanalytical Chemistry
Chapter in Electroanalytical Chemistry: A Series of Advances
Furst, A. L.; Hill, M. G.; Barton, J. K., edited by A. Bard and C. Zoski

Posted in Electrochemistry
Post navigation
Quantifying Hormone Disruptors with an Engineered Bacterial Biosensor →
← Cucurbit[6]uril-Promoted Click Chemistry for Protein Modification

Recent Publications

  • Metal-phenolic networks improve interfacial electron transfer in bio-electrochemical systems July 29, 2026
  • Multivalent Glycopolymer Design Unlocks Antimicrobial Activity of 2-Deoxyglucose July 29, 2026
  • A universal surface functionalization technique to chemically enhance live microbial cells July 29, 2026
  • Mailing Address

    Massachusetts Institute of Technology
    Department of Chemical Engineering
    77 Massachusetts Avenue
    Building 66-462
    Cambridge, Massachusetts 02139

  • General Inquires

    Phone: (617) 254-4677
    Email: afurst@mit.edu
    Accessibility

    Follow us on
    Follow us on Twitter
  • Campus Map & Direction


© 2019 - 2026 MIT : Department of Chemical Engineering