Unlocking the Power of S-scheme Heterojunctions in Photocatalysis #sciencefather #researchaward #Photocatalysis #HydrogenEvolution


The integration of defect-mediated S-scheme heterojunctions in metal-organic framework (MOF)-derived nitrogen-doped NiO porous microrods and ZnIn₂S₄ nanosheets presents an innovative approach to boosting photocatalytic hydrogen evolution. These heterojunctions facilitate efficient charge transfer and separation, improving photocatalytic performance under visible light. The nitrogen doping in NiO enhances electronic properties, while the porous microrod structure maximizes surface area for interaction. ZnIn₂S₄ nanosheets contribute to an increased light absorption range and photogenerated electron-hole pair separation. Together, this combination forms a highly efficient photocatalyst, making it a promising candidate for sustainable hydrogen production and clean energy applications.

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#Photocatalysis #HydrogenEvolution #SustainableEnergy #MOF #NiO #ZnIn2S4 #EnergyConversion #Nanomaterials #DefectEngineering #Heterojunctions #Nanotechnology #Photocatalyst #HydrogenProduction #RenewableEnergy #GreenEnergy #CleanEnergy #MaterialsScience #EnergyStorage #SolarEnergy #VisibleLight #Innovation


 

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