A paper published in Energy and Environmental Science by Strycharz-Glaven et al. suggests that electron transport along the pili and through the conductive biofilms of Geobacter sulfurreducens proceeds via electron superexchange rather than metallic-like conductivity. Multiple lines of evidence disprove the superexchange hypothesis, but are consistent with metallic-like conductivity
One of the most exciting developments in the field of electromicrobiology has been the discovery of ...
While actual models explaining electron conduction in electricity producing biofilms have evolved se...
Geobacter sulfurreducens developed highly structured, multilayer biofilms on the anode surface of a ...
Two competing models for long-range electron transport through the conductive biofilms and nanowires...
Electron transport is a fundamental mechanism in a variety of biological systems such as photosynthe...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Geobacter sulfurreducens bacteria grow on biofilms and have the particular ability of using polarize...
Conductivity of an individual proteinaceous filaments, called pili or microbial nanowires, produced ...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from March 23, 201...
Electron transfer is central to cellular life, from photosynthesis to respiration. In the case of an...
The electrical conductivity measured in Shewanella and Geobacter spp. is an intriguing physical prop...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
The mechanism of electron transport in Geobacter sulfurreducensbiofilms is a topic under intense stu...
Electronic nanostructures made from natural amino acids are attractive because of their relatively l...
One of the most exciting developments in the field of electromicrobiology has been the discovery of ...
While actual models explaining electron conduction in electricity producing biofilms have evolved se...
Geobacter sulfurreducens developed highly structured, multilayer biofilms on the anode surface of a ...
Two competing models for long-range electron transport through the conductive biofilms and nanowires...
Electron transport is a fundamental mechanism in a variety of biological systems such as photosynthe...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Geobacter sulfurreducens bacteria grow on biofilms and have the particular ability of using polarize...
Conductivity of an individual proteinaceous filaments, called pili or microbial nanowires, produced ...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from March 23, 201...
Electron transfer is central to cellular life, from photosynthesis to respiration. In the case of an...
The electrical conductivity measured in Shewanella and Geobacter spp. is an intriguing physical prop...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
The mechanism of electron transport in Geobacter sulfurreducensbiofilms is a topic under intense stu...
Electronic nanostructures made from natural amino acids are attractive because of their relatively l...
One of the most exciting developments in the field of electromicrobiology has been the discovery of ...
While actual models explaining electron conduction in electricity producing biofilms have evolved se...
Geobacter sulfurreducens developed highly structured, multilayer biofilms on the anode surface of a ...