2012
DOI: 10.1039/c2ee23344d
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Layered corrugated electrode macrostructures boost microbial bioelectrocatalysis

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Cited by 193 publications
(134 citation statements)
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“…With non-porous materials such as glassy carbon and graphite rods or plates current densities reported were about 1 mA cm -2 at the maximum [46][47][48]. The maximal current density of 12.5 mA cm -2 observed in this study exceeds those by more than one decade.…”
Section: 6mentioning
confidence: 56%
See 1 more Smart Citation
“…With non-porous materials such as glassy carbon and graphite rods or plates current densities reported were about 1 mA cm -2 at the maximum [46][47][48]. The maximal current density of 12.5 mA cm -2 observed in this study exceeds those by more than one decade.…”
Section: 6mentioning
confidence: 56%
“…The maximal current density of 12.5 mA cm -2 observed in this study exceeds those by more than one decade. Current densities of 12.87 mA cm -2 (ice-templated titanium-based ceramics, [49]) and 39 mA cm -2 (layered corrugated carbon, [46]) have been reported for highly porous anodes. Highly porous electrodes have a significant larger surface area compared to the smooth graphite rod used in this study.…”
Section: 6mentioning
confidence: 99%
“…With respect to the first goal, the power density of the EFCs could be increased to 10 mW cm À 2 or higher, using a combination of newly developed high-electrical conductivity and high-surface-area nanomaterials as electrodes, such as graphene foams 36 or carbonized nanofibre aerogels 37,38 . The performance can also be improved using better mediators 5 , more active enzymes or enzymatic complexes 39 , and optimized enzyme ratios predicted by in silicon models 40 .…”
Section: Discussionmentioning
confidence: 99%
“…[281] Microbial electrolysis is an emerging method based on electroactive microorganisms which form a biofilm on electrodes. [282,283] Efficient members for microbial electrolysis are Shewanella or Geobacter. Microbial electrolysis allows high theoretical conversion yield of organic substrate.…”
Section: Challenges Involved In Increasing Biohydrogen Production By mentioning
confidence: 99%