• English
    • العربية
  • العربية
  • Login
  • QU
  • QU Library
  •  Home
  • Communities & Collections
View Item 
  •   Qatar University Digital Hub
  • Qatar University Institutional Repository
  • Academic
  • Research Units
  • Center for Advanced Materials
  • Center for Advanced Materials Research
  • View Item
  • Qatar University Digital Hub
  • Qatar University Institutional Repository
  • Academic
  • Research Units
  • Center for Advanced Materials
  • Center for Advanced Materials Research
  • View Item
  •      
  •  
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Glycine-modified chitosan-embedded silver nanoparticles: a green approach to Pb2+ adsorption and bioactivity enhancement

    Thumbnail
    View/Open
    s11696-024-03842-3.pdf (1.903Mb)
    Date
    2024
    Author
    Kannaiyan, Suba
    Gopal, Andal
    Lakshmipathy, R.
    Ali, Daoud
    Alarifi, Saud
    Geetha, Mithra
    Sadasivuni, Kishor Kumar
    ...show more authors ...show less authors
    Metadata
    Show full item record
    Abstract
    Glycine-modified chitosan anchored silver nanoparticles (SCG) were synthesized using a green method without a cross-linking agent. UV–Vis, FTIR, XRD, TEM and SEM techniques confirmed the formation of the SCG nanocomposite and silver nanoparticles. The SCG nanoparticles, estimated at 20 nm, are smaller than the chitosan stabilized Ag (SC) nanoparticles. The biological significance of the SCG nanoparticles was assessed through their anti-oxidant and antibacterial activities. SCG nanoparticles demonstrated significant anti-oxidant activity with an IC50 of 133 µg ml−1, surpassing that of SC nanoparticles. The ZoI of was found to be 30 mm for the S. aureus and E. coli bacterial strains indicating excellent antimicrobial activity. The efficiency of SCG nanoparticles in removing Pb2+ ions was tested using a batch adsorption process. A Central Composite Design (CCD) was employed to optimize the independent variables, and ANOVA results indicated the CCD model’s reliability and significance with a p-value < 0.0001. The SCG nanoparticles exhibited a high Pb2+ ion loading capacity of 270.2 mg g−1 from aqueous solution with a removal efficiency of 93%. Isotherm and kinetic investigations of the equilibrium data suggest the suitability of Langmuir and pseudo-second-order kinetic models. Thermodynamic studies revealed the process’s spontaneity and exothermic nature. The mechanism of adsorption was found to be ion exchange with a mean potential energy (Es) of 9.4 kJ/mol. These findings suggest that glycine-modified chitosan anchored silver nanoparticles have promising applications in biological and environmental domains.
    DOI/handle
    http://dx.doi.org/10.1007/s11696-024-03842-3
    http://hdl.handle.net/10576/63057
    Collections
    • Center for Advanced Materials Research [‎1518‎ items ]
    • Mechanical & Industrial Engineering [‎1472‎ items ]

    entitlement


    Qatar University Digital Hub is a digital collection operated and maintained by the Qatar University Library and supported by the ITS department

    Contact Us | Send Feedback
    Contact Us | Send Feedback | QU

     

     

    Home

    Submit your QU affiliated work

    Browse

    All of Digital Hub
      Communities & Collections Publication Date Author Title Subject Type Language Publisher
    This Collection
      Publication Date Author Title Subject Type Language Publisher

    My Account

    Login

    Statistics

    View Usage Statistics

    Qatar University Digital Hub is a digital collection operated and maintained by the Qatar University Library and supported by the ITS department

    Contact Us | Send Feedback
    Contact Us | Send Feedback | QU

     

     

    Video