Understanding the electrochemical properties of bio-anodes is essential to improve performance of bioelectrochemical systems. Electrochemical Impedance Spectroscopy (EIS) is often used to study these properties in detail. Analysis of the EIS response, however, is challenging due to the interfering effect of the large capacitance of typically used graphite and carbon-based electrodes. In this study, we used flat electrodes made of conductive Fluorine-doped Tin Oxide (FTO) as anode, and monitored bio-anode performance. We show that with this configuration, it is possible to accurately separate the distinct contributions to the electrical response of the bio-anodes: charge transfer, biofilm and diffusion resistances, and biofilm capacitance. W...
This paper presents a simple mathematical model to predict the impedance data acquired by electric c...
this study, we identified mass and charge transfer resistances for an oxygen reducing biocathode in ...
Anode biofilm is a crucial component in microbial fuel cells (MFCs) for electrogenesis. Better knowl...
Understanding the electrochemical properties of bio-anodes is essential to improve performance of bi...
In this paper we studied the performance of bioanodes under different experimental conditions using ...
In this paper we studied the performance of bioanodes under different experimental conditions using ...
Biofilm monitoring in environmental and biomedical applications remains a challenge. Currently, conv...
Bacteria are ubiquitous, forming biofilms on nearly any surface in an aqueous environment. The accum...
Summary: The formation and bioelectric performance of anode biofilms in microbial electrochemical sy...
An electrical model able to decouple the electron pathway from microbial cell machinery impedance te...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
This study used a simple and efficient electrochemical technique, cyclic voltammogram (CV), to quant...
Electrochemical impedance spectroscopy, cyclic voltammetry, and polarization tests were used to moni...
Several studies have reported that current produced by electro-active bacteria (EAB) is dependent on...
Electrochemical gradients are the backbone of basic cellular functions, including chemo-osmotic tran...
This paper presents a simple mathematical model to predict the impedance data acquired by electric c...
this study, we identified mass and charge transfer resistances for an oxygen reducing biocathode in ...
Anode biofilm is a crucial component in microbial fuel cells (MFCs) for electrogenesis. Better knowl...
Understanding the electrochemical properties of bio-anodes is essential to improve performance of bi...
In this paper we studied the performance of bioanodes under different experimental conditions using ...
In this paper we studied the performance of bioanodes under different experimental conditions using ...
Biofilm monitoring in environmental and biomedical applications remains a challenge. Currently, conv...
Bacteria are ubiquitous, forming biofilms on nearly any surface in an aqueous environment. The accum...
Summary: The formation and bioelectric performance of anode biofilms in microbial electrochemical sy...
An electrical model able to decouple the electron pathway from microbial cell machinery impedance te...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
This study used a simple and efficient electrochemical technique, cyclic voltammogram (CV), to quant...
Electrochemical impedance spectroscopy, cyclic voltammetry, and polarization tests were used to moni...
Several studies have reported that current produced by electro-active bacteria (EAB) is dependent on...
Electrochemical gradients are the backbone of basic cellular functions, including chemo-osmotic tran...
This paper presents a simple mathematical model to predict the impedance data acquired by electric c...
this study, we identified mass and charge transfer resistances for an oxygen reducing biocathode in ...
Anode biofilm is a crucial component in microbial fuel cells (MFCs) for electrogenesis. Better knowl...