The study of electroactive microbial biofilms often requires knowledge of the biofilm thickness. Unfortunately, this parameter is, nowadays, only accessible through expensive microscopic techniques. This work overcomes this limitation by presenting a new strategy, exploiting the use of chronoamperometry (CA) alone. A mixed-culture biofilm is exposed to an O2-saturated solution during anode respiration to suppress its catalytic activity. Assuming that inactivation of the electrocatalytic process is caused by O2 diffusion through the biofilm, a simple relation allows the use of the time constant extracted from the fitting of the curve of the CA trace during inactivation for the straightforward and quantitative determination of biofilm thickne...
Bacteria are ubiquitous, forming biofilms on nearly any surface in an aqueous environment. The accum...
In this paper we explored the use of an electrochemical quartz crystal microbalance (QCM) to follow ...
Optimization of bio-electrochemical systems (BESs) relies on a better understanding of electro-activ...
Summary: The formation and bioelectric performance of anode biofilms in microbial electrochemical sy...
The mechanism of electron transport across electroactive biofilms (EABs) is of high interest and sti...
International audienceThe mechanism of electron transport across electroactive biofilms (EABs) is of...
Vis. Exp. (82), e50800, doi:10.3791/50800 (2013). The growth of anodic electroactive microbial biofi...
The development of an electrochemical detector to monitor the in situ formation of biofilms is descr...
Several studies have reported that current produced by electro-active bacteria (EAB) is dependent on...
Detailed studies of microbial growth in bioelectrochemical systems (BESs) are required for their sui...
The effect of experimental conditions on cyclic voltammetry experiments on platinum electrodes cover...
Detailed studies of microbial growth in bioelectrochemical systems (BESs) are required for their sui...
The effect of experimental conditions on cyclic voltammetry experiments on platinum electrodescovere...
Understanding the mechanism of ET (electron transfer) through electroactivemicrobial biofilms is a c...
This study used a simple and efficient electrochemical technique, cyclic voltammogram (CV), to quant...
Bacteria are ubiquitous, forming biofilms on nearly any surface in an aqueous environment. The accum...
In this paper we explored the use of an electrochemical quartz crystal microbalance (QCM) to follow ...
Optimization of bio-electrochemical systems (BESs) relies on a better understanding of electro-activ...
Summary: The formation and bioelectric performance of anode biofilms in microbial electrochemical sy...
The mechanism of electron transport across electroactive biofilms (EABs) is of high interest and sti...
International audienceThe mechanism of electron transport across electroactive biofilms (EABs) is of...
Vis. Exp. (82), e50800, doi:10.3791/50800 (2013). The growth of anodic electroactive microbial biofi...
The development of an electrochemical detector to monitor the in situ formation of biofilms is descr...
Several studies have reported that current produced by electro-active bacteria (EAB) is dependent on...
Detailed studies of microbial growth in bioelectrochemical systems (BESs) are required for their sui...
The effect of experimental conditions on cyclic voltammetry experiments on platinum electrodes cover...
Detailed studies of microbial growth in bioelectrochemical systems (BESs) are required for their sui...
The effect of experimental conditions on cyclic voltammetry experiments on platinum electrodescovere...
Understanding the mechanism of ET (electron transfer) through electroactivemicrobial biofilms is a c...
This study used a simple and efficient electrochemical technique, cyclic voltammogram (CV), to quant...
Bacteria are ubiquitous, forming biofilms on nearly any surface in an aqueous environment. The accum...
In this paper we explored the use of an electrochemical quartz crystal microbalance (QCM) to follow ...
Optimization of bio-electrochemical systems (BESs) relies on a better understanding of electro-activ...