In pursuance of efficient tools for the local analysis and characterization of novel photoelectrocatalytic materials, several SECM-based techniques have been developed, aiming on the combined benefit of a local irradiation of the analyzed sample and a microelectrode probe for the localized electrochemical analysis of the surface. We present the development and application of scanning photoelectrochemical microscopy (SPECM) for the laterally resolved characterization of photoelectrocatalytic materials. Particularly, the system was developed for the photoelectrochemical characterization of n-type semiconductor-based photoanodes for water splitting. By using the tip microelectrode simultaneously for local irradiation and as an electrochemical ...
High-resolution analytical techniques based on scanned microprobes over surfaces are useful to inves...
When a semiconductor is inserted into an electrolyte, a rectifying electrical contact is produced. T...
Hematite is a promising photoanode for solar driven water splitting. Elucidating its surface chemica...
The development of techniques for nanoscale structure–activity correlations is of major importance f...
To understand the pathway of a photoelectrochemical (PEC) reaction, quantitative knowledge of reacti...
International audienceAs the world energy crisis remains a long-term challenge, development and acce...
International audienceAs the world energy crisis remains a long-term challenge, development and acce...
International audienceAs the world energy crisis remains a long-term challenge, development and acce...
Scanning Electrochemical Microscopy is a scanning probe technique which is becoming a leading elect...
The development of techniques for nanoscale structure–activity correlations is of major importance f...
Reaction kinetics and surface coverage of water oxidation intermediates at a W/Mo-BiVO<sub>4</sub> p...
Materials and photoelectrode architectures that are highly efficient, extremely stable, and made fro...
Materials and photoelectrode architectures that are highly efficient, extremely stable, and made fro...
High-resolution analytical techniques based on scanned microprobes over surfaces are useful to inves...
When a semiconductor is inserted into an electrolyte, a rectifying electrical contact is produced. T...
High-resolution analytical techniques based on scanned microprobes over surfaces are useful to inves...
When a semiconductor is inserted into an electrolyte, a rectifying electrical contact is produced. T...
Hematite is a promising photoanode for solar driven water splitting. Elucidating its surface chemica...
The development of techniques for nanoscale structure–activity correlations is of major importance f...
To understand the pathway of a photoelectrochemical (PEC) reaction, quantitative knowledge of reacti...
International audienceAs the world energy crisis remains a long-term challenge, development and acce...
International audienceAs the world energy crisis remains a long-term challenge, development and acce...
International audienceAs the world energy crisis remains a long-term challenge, development and acce...
Scanning Electrochemical Microscopy is a scanning probe technique which is becoming a leading elect...
The development of techniques for nanoscale structure–activity correlations is of major importance f...
Reaction kinetics and surface coverage of water oxidation intermediates at a W/Mo-BiVO<sub>4</sub> p...
Materials and photoelectrode architectures that are highly efficient, extremely stable, and made fro...
Materials and photoelectrode architectures that are highly efficient, extremely stable, and made fro...
High-resolution analytical techniques based on scanned microprobes over surfaces are useful to inves...
When a semiconductor is inserted into an electrolyte, a rectifying electrical contact is produced. T...
High-resolution analytical techniques based on scanned microprobes over surfaces are useful to inves...
When a semiconductor is inserted into an electrolyte, a rectifying electrical contact is produced. T...
Hematite is a promising photoanode for solar driven water splitting. Elucidating its surface chemica...