International audienceOngoing developments of sustainable energy technologies based on high-surface-area semiconductive metal oxide electrodes operating under mild and safe aqueous conditions require deep understanding of proton and electron transfer/transport throughout their porous structure. To address this issue, we investigated the electrochemical reductive protonation of high surface area nanostructured amorphous TiO 2 electrodes (produced by glancing angle deposition) in both buffered and unbuffered aqueous solutions. Quantitative analysis of the two charge storage mechanisms was achieved, allowing proper deconvolution of the electrical double-layer capacitive charge storage from the reversible faradaic one resulting from the proton-...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...
Nanostructured materials possess unique physical-chemical characteristics and have attracted much at...
Uncovering the mechanism of low-temperature protonic conduction in highly dense nanostructured metal...
International audienceOngoing developments of sustainable energy technologies based on high-surface-...
Ongoing developments of sustainable energy technologies based on high-surface-area semiconductive me...
Ongoing developments of sustainable energy technologies based on high-surface-area semiconductive me...
In order to enable higher input of renewable energy into our grid system, increase in gird storage c...
International audienceInsertion mechanisms of multivalent ions in transition metal oxide cathodes ar...
International audienceNear-neutral aqueous electrolytes are to be preferred for the development of s...
Better understanding of the mechanisms of charge transport/transfer and charge storage in transparen...
Particle/particle interfaces play a crucial role in the functionality and performance of nanocrystal...
Hydrogen ion is an attractive charge carrier for energy storage due to its smallest radius. However,...
The effects of proton irradiation on nanostructured metal oxides have been investigated. Recent stud...
Particle/particle interfaces play a crucial role in the functionality and performance of nanocrystal...
Aqueous intercalation batteries, using Earth-abundant electrode materials such as TiO2, present the ...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...
Nanostructured materials possess unique physical-chemical characteristics and have attracted much at...
Uncovering the mechanism of low-temperature protonic conduction in highly dense nanostructured metal...
International audienceOngoing developments of sustainable energy technologies based on high-surface-...
Ongoing developments of sustainable energy technologies based on high-surface-area semiconductive me...
Ongoing developments of sustainable energy technologies based on high-surface-area semiconductive me...
In order to enable higher input of renewable energy into our grid system, increase in gird storage c...
International audienceInsertion mechanisms of multivalent ions in transition metal oxide cathodes ar...
International audienceNear-neutral aqueous electrolytes are to be preferred for the development of s...
Better understanding of the mechanisms of charge transport/transfer and charge storage in transparen...
Particle/particle interfaces play a crucial role in the functionality and performance of nanocrystal...
Hydrogen ion is an attractive charge carrier for energy storage due to its smallest radius. However,...
The effects of proton irradiation on nanostructured metal oxides have been investigated. Recent stud...
Particle/particle interfaces play a crucial role in the functionality and performance of nanocrystal...
Aqueous intercalation batteries, using Earth-abundant electrode materials such as TiO2, present the ...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...
Nanostructured materials possess unique physical-chemical characteristics and have attracted much at...
Uncovering the mechanism of low-temperature protonic conduction in highly dense nanostructured metal...