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Open image in new window Fig. 1 The schematic setup of PEC water splitting system.
Photocathode usually comprises p-type semiconductor coated on conductive substrates in the PEC water splitting system.
In this paper, a new type of photochemical water splitting system is proposed and analyzed.
In this paper, we investigate an adaptive energy management and power splitting system for a fuel cell hybrid electric vehicle.
The stability and cost of solar-driven water splitting system are still the main bottlenecks for its large-scale implementation.
In this paper, a direct solar photocatalytic water splitting system with surface uniform concentrators (SUCs) is designed.
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The prospect of the PEC water splitting systems were highly limited by the nanostructured photocatalysts and their device configurations.
This overview focuses on the recent development about catalyst nanomaterials and nanostructures in different PEC water splitting systems.
Development of electrocatalysts for the oxygen evolution reaction (OER) plays a critical role in electrochemical water splitting systems.
Controlling the morphology of semiconductors at the nanoscale level is the key for efficient photoelectrochemical (PEC) water splitting systems.
These arrays are employed as photoanodes in water splitting systems under illumination of AM 1.5 G (110 mW/cm2).
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