Related Experiment Video
Updated: Feb 15, 2026

Electrochemical Impedance Spectroscopy as a Tool for Electrochemical Rate Constant Estimation
Published on: October 10, 2018
Impedance spectroscopy of single bacterial nanofilament reveals water-mediated charge transfer
Artem Grebenko1,2, Vyacheslav Dremov1,2, Petr Barzilovich1,3
1Moscow Institute of Physics and Technology, Institute lane 9, Dolgoprudny, Russian Federation.
Abstract:
For decades respiratory chain and photosystems were the main firing field of the studies devoted to mechanisms of electron transfer in proteins. The concept of conjugated lateral electron and transverse proton transport during cellular respiration and photosynthesis, which was formulated in the beginning of 1960-s, has been confirmed by thousands of experiments. However, charge transfer in recently discovered bacterial nanofilaments produced by various electrogenic bacteria is regarded currently outside of electron and proton conjugation concept. Here we report the new study of charge transfer within nanofilaments produced by Shewanella oneidensis MR-1 conducted in atmosphere of different relative humidity (RH). We utilize impedance spectroscopy and DC (direct current) transport measurements to find out the peculiarities of conductivity and Raman spectroscopy to analyze the nanofilaments' composition. Data analysis demonstrates that apparent conductivity of nanofilaments has crucial sensitivity to humidity and contains several components including one with unusual behavior which we assign to electron transport. We demonstrate that in the case of Shewanella oneidensis MR-1 charge transfer within these objects is strongly mediated by water. Basing on current data analysis of conductivity we conclude that the studied filaments of Shewanella oneidensis MR-1 are capable of hybrid (conjugated) electron and ion conductivity.
Related Concept Videos
Formal Charges
Ions and Ionic Charges
Atomic Radii and Effective Nuclear Charge
Types of Genetic Transfer Between Organisms
Water and Mineral Acquisition
Impedance Combination

