Publication | Closed Access
Construction of a tandem S-scheme GDY/CuI/CdS-R heterostructure based on morphology-regulated graphdiyne (g-C<sub><i>n</i></sub>H<sub>2<i>n</i>−2</sub>) for enhanced photocatalytic hydrogen evolution
72
Citations
73
References
2021
Year
Materials ScienceEngineeringPhotoredox ProcessPhotochemistryInorganic PhotochemistryPhotocatalytic Reduction PotentialApplied PhysicsBuilt-in Electric FieldPhotocatalysisCatalysisPhotocatalytic Hydrogen EvolutionHydrogenChemistryPhotoelectrocatalysisMorphology-regulated GraphdiynePhotoelectrochemistryTandem S-scheme Heterojunction
The construction of a tandem S-scheme heterojunction forms a built-in electric field at the interface between the catalysts and increases the photocatalytic reduction potential.
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