Boosting Photodegradation with g-C3N4 Engineering #sciencefather #researchaward


The heterojunction engineering of g-C₃N₄ significantly boosts charge carrier separation, facilitating efficient photogenerated electron transfer. This improved electron mobility enhances the photocatalytic degradation of methylene blue under visible light irradiation, making it a promising approach for wastewater treatment. By optimizing heterojunction structures, recombination losses are minimized, leading to superior photocatalytic efficiency. The high stability and reusability of the engineered g-C₃N₄ further highlight its potential in practical applications. This innovative material paves the way for eco-friendly and sustainable pollutant degradation, offering a scalable and energy-efficient solution for water purification and environmental sustainability.

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#Photocatalysis #gC3N4 #Heterojunction #ElectronTransfer #MethyleneBlue #DyeDegradation #WastewaterTreatment #SustainableTech #Nanomaterials #Photodegradation #Catalysis #EnvironmentalScience #GreenEnergy #WaterPurification #AdvancedMaterials #VisibleLight #EcoFriendly #PollutionControl #MaterialScience #RenewableEnergy


 

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