Hydrogen ion is an attractive charge carrier for energy storage due to its smallest radius. However, hydrogen ions usually exist in the form of hydronium ion (H3O+) because of its high dehydration energy; the choice of electrode materials is thus greatly limited to open frameworks and layered structures with large ionic channels. Here, the desolvation of H3O+ is achieved by using anatase TiO2 as anodes, enabling the H+ intercalation with a strain-free characteristic. Density functional theory calculations show that the desolvation effects are dependent on the facets of anatase TiO2. Anatase TiO2 (001) surface, a highly reactive surface, impels the desolvation of H3O+ into H+. When coupled with a MnO2 cathode, the proton battery delivers a h...
© 2018 American Chemical Society. Pursuing efficient and low-cost electrocatalysts is crucial for th...
Sodium ion batteries are considered as one of the most promising energy storage devices as lithium i...
Electrocatalysis using renewable energy sources provides a clean technology to produce hydrogen from...
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...
International audienceOngoing developments of sustainable energy technologies based on high-surface-...
Negative electrode materials that possess fast lithium insertion kinetics are in high demand for hig...
Rechargeable proton batteries are attractive, because protons as a charge carrier have a small ionic...
International audienceInsertion mechanisms of multivalent ions in transition metal oxide cathodes ar...
International audienceProton chemistry is a fascinating field with both fundamental and applied aspe...
Particle/particle interfaces play a crucial role in the functionality and performance of nanocrystal...
International audienceNear-neutral aqueous electrolytes are to be preferred for the development of s...
TiO2, well known for its photocatalytic properties, has also been studied as a safer anode material ...
Solar-to-electricity energy conversion and large scale electricity storage technologies are key to a...
TiO2 photoanodes suffer from low catalytic activity and poor stability under acidic media for water ...
© 2018 American Chemical Society. Pursuing efficient and low-cost electrocatalysts is crucial for th...
Sodium ion batteries are considered as one of the most promising energy storage devices as lithium i...
Electrocatalysis using renewable energy sources provides a clean technology to produce hydrogen from...
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...
International audienceOngoing developments of sustainable energy technologies based on high-surface-...
Negative electrode materials that possess fast lithium insertion kinetics are in high demand for hig...
Rechargeable proton batteries are attractive, because protons as a charge carrier have a small ionic...
International audienceInsertion mechanisms of multivalent ions in transition metal oxide cathodes ar...
International audienceProton chemistry is a fascinating field with both fundamental and applied aspe...
Particle/particle interfaces play a crucial role in the functionality and performance of nanocrystal...
International audienceNear-neutral aqueous electrolytes are to be preferred for the development of s...
TiO2, well known for its photocatalytic properties, has also been studied as a safer anode material ...
Solar-to-electricity energy conversion and large scale electricity storage technologies are key to a...
TiO2 photoanodes suffer from low catalytic activity and poor stability under acidic media for water ...
© 2018 American Chemical Society. Pursuing efficient and low-cost electrocatalysts is crucial for th...
Sodium ion batteries are considered as one of the most promising energy storage devices as lithium i...
Electrocatalysis using renewable energy sources provides a clean technology to produce hydrogen from...