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Bandgap engineering approach for synthesising photoactive novel Ag/HAp/SnS2 for removing toxic anti-fungal pharmaceutical from aqueous environment

Vishal Gadore, Soumya Ranjan Mishra, Md. Ahmaruzzaman

2023Journal of Hazardous Materials37 citationsDOIOpen Access PDF

Abstract

The present work shed light on synthesising a novel ternary Z-scheme Ag/HAp/SnS 2 (AHS) nano photocatalyst to degrade metronidazole (MTZ) in wastewater through H 2 O 2 -assisted AOP under natural sunlight. HAp extracted from the fish scales of rohu fish through alkaline treatment was decorated with Ag nanoparticles using ascorbic acid as a bio-reductant. Tin disulphide (SnS 2 ) was anchored over Ag/HAp to prevent agglomeration and enhance photocatalytic activity by delaying the electron-hole recombination rate. After 45 min of irradiation, a degradation efficiency of 98.85 ± 1.86% for 15 ppm MTZ could be achieved. The performance of the prepared photocatalyst in real wastewater was investigated by introducing several metal cations and anions in the photodegradation process. The degradation products were identified by HRLCMS analysis, and the breakdown mechanism of MTZ was proposed. The present study enlightens the importance of SnS 2 -based photocatalysts for organic pollutant degradation under natural sunlight through an advanced oxidation process. The characterization results showed that the enhanced photodegradation efficiency of AHS is attributed to the formation of an all-solid-state Z-scheme heterojunction with Ag nanoparticles acting as charge transfer medium and as electron accumulators helping in delaying charge recombination.

Topics & Concepts

PhotodegradationPhotocatalysisChemistryAqueous solutionNanoparticleDegradation (telecommunications)Chemical engineeringWastewaterElectron transferTernary operationNuclear chemistryMaterials sciencePhotochemistryNanotechnologyCatalysisOrganic chemistryWaste managementComputer scienceProgramming languageEngineeringTelecommunicationsAdvanced Photocatalysis TechniquesPharmaceutical and Antibiotic Environmental ImpactsAdvanced Nanomaterials in Catalysis
Bandgap engineering approach for synthesising photoactive novel Ag/HAp/SnS2 for removing toxic anti-fungal pharmaceutical from aqueous environment | Litcius