Publication | Closed Access
In-situ construction of lattice-matching NiP2/NiSe2 heterointerfaces with electron redistribution for boosting overall water splitting
255
Citations
50
References
2020
Year
Transition Metal ChalcogenidesChemical EngineeringEngineeringTopological HeterostructuresSurface ScienceApplied PhysicsOverall Water SplittingSolid-state ChemistryChemistryIn-situ ConstructionLayered MaterialWater SplittingLattice-matching Nip2/nise2 Heterointerfaces
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