Turkey Tail, Yun Zhi · 2014 · Research Support, Non U.S. Gov'T
Low relevanceBilirubin oxidase bioelectrocatalytic cathodes: the impact of hydrogen peroxide.
Trametes versicolor
Energy & fatigue
Key points
- Mediator-less, direct electro-catalytic reduction of oxygen to water by bilirubin oxidase (Myrothecium sp.) was obtained on anthracene-modified, multi-walled carbon nanotubes
- H2O2 was found to significantly and irreversibly affect the electro-catalytic activity of bilirubin oxidase, whereas similar electrodes comprised of laccase (Trametes versicolor) were reversibly inhibited
From the paper
Abstract
Mediator-less, direct electro-catalytic reduction of oxygen to water by bilirubin oxidase (Myrothecium sp.) was obtained on anthracene-modified, multi-walled carbon nanotubes. H2O2 was found to significantly and irreversibly affect the electro-catalytic activity of bilirubin oxidase, whereas similar electrodes comprised of laccase (Trametes versicolor) were reversibly inhibited.
Citation
Milton RD, Giroud F, Thumser AE, Minteer SD, Slade RC (2014). Bilirubin oxidase bioelectrocatalytic cathodes: the impact of hydrogen peroxide. Chemical communications (Cambridge, England) https://doi.org/10.1039/c3cc47689h PMID: 24185735
Open citation