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Synthesis of Solar Light Active Reduced Graphene Oxide-ZnS Nanomaterial for Photocatalytic Degradation and Antibacterial Applications. | LitMetric

AI Article Synopsis

  • Good water quality is crucial for life, leading to increased focus on degrading organic dye wastes from textiles to protect the environment.
  • This research focuses on creating a ceramic-based nanomaterial catalyst, specifically a reduced graphene oxide-ZnS (rGO-ZnS) composite, to break down dye solutions when exposed to sunlight.
  • The study shows that the rGO-ZnS nanomaterial effectively degrades naphthol blue black dye (NBB) by 93.7% under direct sunlight, while also examining the impact of radical scavengers and the antibacterial properties of the catalyst.

Article Abstract

Good water quality is essential for life; therefore, decolorizing and detoxifying organic dye wastes (textile effluents) have gained immense environmental importance in recent years. Thus, the degradation of wastewater has become a potential need for our environment. This research aims to synthesize and investigate a ceramic-based nanomaterial catalyst for the degradation of dye solution under exposure to sunlight. A reduced graphene oxide-ZnS (rGO-ZnS) nanomaterial was qualitatively synthesized using a solvothermal method. The prepared nanomaterial was characterized using XRD, SEM, HR-TEM, EDX, XPS, and FT-IR techniques. The photocatalytic activity of the rGO-ZnS nanomaterial was checked using oxidative photocatalytic degradation of naphthol blue black dye (NBB) under direct sunlight irradiation. Here, the rGO/ZnS composite showed a significant photocatalytic performance to degraded NBB (93.7%) under direct solar light. Chemical Oxygen Demand (COD) measurements confirmed the mineralization of the dye. The influence of different radical scavengers on NBB degradation was studied. Optimum conditions for efficient degradation were determined. The antibacterial property of the prepared catalyst was studied.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386591PMC
http://dx.doi.org/10.3390/mi14071324DOI Listing

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