This work applies electrochemical and computational techniques to explore the local environment of fuel-producing oxidoreductases within porous electrode architectures. This improved understanding of the local environment enabled simple manipulation of the electrolyte solution, by adjusting the bulk pH and buffer pKa, to achieve an optimum local pH for maximal activity of the immobilised enzyme. When applied to macroporous inverse opal electrodes, the benefits of higher loading and increased mass transport were employed and, consequently, the electrolyte adjusted to reach −8.0 mA cm−2 for the H2 evolution reaction (HER) and −3.6 mA cm−2 for the CO2 reduction reaction (CO2RR), demonstrating an 18-fold improvement on previously reported enzym...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
International audienceUnderstanding how environmental factors affect the bioelectrode efficiency and...
2019-02-21This thesis focuses on two main topics in electrochemistry: (1) studying electrochemical e...
Bioelectrochemistry employs an array of high-surface-area meso- and macroporous electrode architectu...
International audienceUsing redox enzymes as biocatalysts in fuel cells is an attractive strategy fo...
Using redox enzymes as biocatalysts in fuel cells is an attractive strategy for sustainable energy p...
The drastic loading reduction or complete elimination of Pt-group metals from PEM-based fuel cellsan...
The growing depletion of fossil fuels and its associated environmental concerns have drawn significa...
Protein immobilization on electrodes is a key concept in exploiting enzymatic processes for bioelect...
peer-reviewedBiocatalysts provide a number of advantages such as high selectivity, the ability to o...
We have developed a scalable platform that employs electrolysis for an in vitro synthetic enzymatic ...
International audienceRedox enzymes catalyze major reactions in microorganisms to supply energy for ...
Semi-artificial photoelectrochemistry combines state-of-the-art semiconductors developed in the phot...
This thesis focuses on studies of both enzymatic (EFC) and microbial (MFC) fuel cells. In the enzyma...
Presented on February 18, 2009, from 4-5 pm in room G011 of the Molecular Science and Engineering B...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
International audienceUnderstanding how environmental factors affect the bioelectrode efficiency and...
2019-02-21This thesis focuses on two main topics in electrochemistry: (1) studying electrochemical e...
Bioelectrochemistry employs an array of high-surface-area meso- and macroporous electrode architectu...
International audienceUsing redox enzymes as biocatalysts in fuel cells is an attractive strategy fo...
Using redox enzymes as biocatalysts in fuel cells is an attractive strategy for sustainable energy p...
The drastic loading reduction or complete elimination of Pt-group metals from PEM-based fuel cellsan...
The growing depletion of fossil fuels and its associated environmental concerns have drawn significa...
Protein immobilization on electrodes is a key concept in exploiting enzymatic processes for bioelect...
peer-reviewedBiocatalysts provide a number of advantages such as high selectivity, the ability to o...
We have developed a scalable platform that employs electrolysis for an in vitro synthetic enzymatic ...
International audienceRedox enzymes catalyze major reactions in microorganisms to supply energy for ...
Semi-artificial photoelectrochemistry combines state-of-the-art semiconductors developed in the phot...
This thesis focuses on studies of both enzymatic (EFC) and microbial (MFC) fuel cells. In the enzyma...
Presented on February 18, 2009, from 4-5 pm in room G011 of the Molecular Science and Engineering B...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
International audienceUnderstanding how environmental factors affect the bioelectrode efficiency and...
2019-02-21This thesis focuses on two main topics in electrochemistry: (1) studying electrochemical e...