Litcius/Paper detail

Tailoring graphene-oxide and reduced-graphene-oxide with NaNO<sub>3</sub> and CaCl<sub>2</sub> catalysts with enhanced photo-catalytic degradation of methylene blue dye

Mansi Chitkara, Nitin Goyal, Aashish Kumar, Latha Marasamy, Sirajul Haq, Samar A. Aldossari, Rajesh Haldhar, M. Khalid Hossain

2024RSC Advances11 citationsDOIOpen Access PDF

Abstract

. Moreover, the prepared mixtures were utilized in the degradation process of methylene blue (MB) dye using photo-catalysis, with exposure to both ultraviolet (UV) light and sunlight. When exposed to UV and sunlight irradiation, WN-GO showed rapid and ecologically friendly breakdown of MB dye in comparison to N-GO. WN-GO exhibited exceptional adsorption capabilities, surpassing other tested materials like N-GO, WN-C-RGO and C-RGO. Although WN-C-RGO has demonstrated satisfactory performance in terms of photo-catalytic degradation, as the concentration-time graph of the MB dye revealed significant degradation, with a reduction of up to 90% and 62.5% under UV light and sunlight exposure, respectively. These results offer insightful information on the potential of graphene-based materials to address other environmental issues, particularly in the areas of water treatment.

Topics & Concepts

GrapheneOxideCatalysisMethylene blueDegradation (telecommunications)Materials scienceAdsorptionPhotochemistryUltravioletPhotocatalysisVisible spectrumIrradiationChemical engineeringChemistryNanotechnologyOrganic chemistryOptoelectronicsTelecommunicationsEngineeringMetallurgyPhysicsComputer scienceNuclear physicsGraphene research and applicationsGraphene and Nanomaterials ApplicationsAdvanced Photocatalysis Techniques