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Synthesis and Characterization of Silver and Graphene Nanocomposites and Their Antimicrobial and Photocatalytic Potentials. | LitMetric

AI Article Synopsis

  • Microbial pathogens and industrial toxic wastes in water pose serious threats to human health and aquatic life, prompting research into effective solutions.
  • The study focused on synthesizing multifunctional silver and graphene nanocomposites (Ag-GNPs) with various ratios, examining their physicochemical properties and applications such as antibacterial and photocatalytic effects.
  • The results indicated that Ag-GNPs exhibited enhanced antimicrobial activity and superior photocatalytic performance for dye degradation, highlighting their potential for wastewater treatment and microbial control.

Article Abstract

Microbial pathogens and bulk amounts of industrial toxic wastes in water are an alarming situation to humans and a continuous threat to aquatic life. In this study, multifunctional silver and graphene nanocomposites (Ag)(GNPs) [25% (x = 0.25), 50% (x = 0.50) and 75% (x = 0.75) of GNPs] were synthesized via ex situ approach. Further, the synthesized nanocomposites were explored for their physicochemical characteristics, such as vibrational modes (Raman spectroscopic analysis), optical properties (UV visible spectroscopic analysis), antibacterial and photocatalytic applications. We investigated the antimicrobial activity of silver and graphene nanocomposites (Ag-GNPs), and the results showed that Ag-GNPs nanocomposites exhibit remarkably improved antimicrobial activity (28.78% (), 31.34% () and 30.31% () growth inhibition, which might be due to increase in surface area of silver nanoparticles (AgNPs)). Furthermore, we investigated the photocatalytic activity of silver (AgNPs) and graphene (GNPs) nanocomposites in varying ratios. Interestingly, the Ag-GNPs nanocomposites show improved photocatalytic activity (78.55% degradation) as compared to AgNPs (54.35%), which can be an effective candidate for removing the toxicity of dyes. Hence, it is emphatically concluded that Ag-GNPs hold very active behavior towards the decolorization of dyes and could be a potential candidate for the treatment of wastewater and possible pathogenic control over microbes. In the future, we also recommend different other in vitro biological and environmental applications of silver and graphene nanocomposites.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9415913PMC
http://dx.doi.org/10.3390/molecules27165184DOI Listing

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