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May 9, 2026Scientific Reports0 citationsOpen Access

Biopolymer-assisted synthesis of Ag–Cd nanoparticles on chitosan matrix for catalytic removal of cationic dyes from water

UYUmer YounasSASehrish ArifFAFaisal Ali

Key Points

  • This research aims to develop a chitosan-based nanocomposite for the removal of cationic dyes from water using synthesized AgCdO nanoparticles.
  • AgCdO nanoparticles were synthesized on a chitosan matrix.
  • Characterization was performed using UV/Vis, FT-IR, XRD, and SEM techniques.
  • The catalytic activity for dye degradation was tested with Malachite green, Rhodamine-B, and Methylene blue.
  • Catalytic degradation efficiency was recorded at 91.62% for RhB, 92.42% for MG, and 96.16% for MB.
  • The synthesize nanocomposite displayed a flower Dahlia-like morphology under SEM analysis.
  • The recyclability of the nanocomposite was evaluated under various conditions.

Abstract

Abstract Metal nanoparticles are being used for different applications especially for the removal of toxic pollutants from different environmental segments. In this study, chitosan supported AgCdO nanoparticles have been prepared for the removal of toxic dyes from aqueous medium. Chitosan supported AgCdO nanoparticles (AgCdO-BMNPs@Ch) were synthesized and characterized using different techniques including UV/Vis, FT-IR, XRD and SEM to assess their formation as well as morphology. Crystallite size of bimetallic nanoparticles and composite was found to be 42.15 nm and 38.23 nm respectively. Particle size of nanoparticles as well as composite was also calculated using SEM images and flower Dahlia-like morphology of AgCdO nanoparticles was observed while the composite displayed colonies. In addition, the samples were than studied for catalytic degradation of cationic dyes Malachite green, Rhodamine-B and Methylene blue (MG, Rh-B and MB). Removal of the dyes via catalytic degradation using synthesized samples was recorded up to 91.62 %, 92.42 %, 96.16 % for RhB, MG and MB respectively. Performance of samples was also tested under different conditions and their recyclability was also evaluated. On the basis of current study, authors recommend the preparation of biopolymer supported bimetallic nanoparticles to improve their stability as well as efficiency.

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Cite This Study

Younas et al. (2026) studied this question.

synapsesocial.com/papers/69fecfafb9154b0b82876b25https://doi.org/10.1038/s41598-026-49289-2
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