A cobalt-sulfide (Co-S) film prepared via electrochemical deposition on conductive substrates is shown to behave as an efficient and robust catalyst for electrochemical and photoelectrochemical hydrogen generation from neutral pH water. Electrochemical experiments demonstrate that the film exhibits a low catalytic onset overpotential (η) of 43 mV, a Tafel slope of 93 mV/dec, and near 100% Faradaic efficiency in pH 7 phosphate buffer. Catalytic current densities can approach 50 mA/cm(2) and activity is maintained for at least 40 h. The catalyst can also be electrochemically coated on silicon, rendering a water-compatible photoelectrochemical system for hydrogen production under simulated 1 sun illumination. The facile preparation of this Co-...
Although there is no shortage of supply of fossil fuels at the moment, the necessity to reduce green...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
A cobalt-sulfide (Co-S) film prepared via electrochemical deposition on conductive substrates is sho...
A cobalt-sulfide (Co-S) film prepared via electrochemical deposition on conductive substrates is sho...
The fabrication of electrocatalysts that are active for more than one of the water splitting reactio...
The fabrication of electrocatalysts that are active for more than one of the water splitting reactio...
The fabrication of electrocatalysts that are active for more than one of the water splitting reactio...
Solar-driven hydrogen evolution from water has emerged as an important methodology for the storage o...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
A novel Ni-Co-S-based material prepared by the potentiodynamic deposition from an aqueous solution c...
The construction of viable photoelectrochemical (PEC) devices for solar-driven water splitting can b...
[[abstract]]An integrated cobalt disulfide (CoS2) co-catalyst passivation layer on Si microwires (MW...
Although there is no shortage of supply of fossil fuels at the moment, the necessity to reduce green...
Although there is no shortage of supply of fossil fuels at the moment, the necessity to reduce green...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
A cobalt-sulfide (Co-S) film prepared via electrochemical deposition on conductive substrates is sho...
A cobalt-sulfide (Co-S) film prepared via electrochemical deposition on conductive substrates is sho...
The fabrication of electrocatalysts that are active for more than one of the water splitting reactio...
The fabrication of electrocatalysts that are active for more than one of the water splitting reactio...
The fabrication of electrocatalysts that are active for more than one of the water splitting reactio...
Solar-driven hydrogen evolution from water has emerged as an important methodology for the storage o...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
A novel Ni-Co-S-based material prepared by the potentiodynamic deposition from an aqueous solution c...
The construction of viable photoelectrochemical (PEC) devices for solar-driven water splitting can b...
[[abstract]]An integrated cobalt disulfide (CoS2) co-catalyst passivation layer on Si microwires (MW...
Although there is no shortage of supply of fossil fuels at the moment, the necessity to reduce green...
Although there is no shortage of supply of fossil fuels at the moment, the necessity to reduce green...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...