Phytochemical Synthesis of Silver Nanoparticles and Their Antimicrobial Investigation on Cotton and Wool Textiles.
Mihaela Cristina LiteRoxana ConstantinescuElena Cornelia TănăsescuAndrei Cristian KuncserCosmin RomanițanDan Eduard MihaiescuIoana LacatusuNicoleta BadeaPublished in: Materials (Basel, Switzerland) (2023)
The use of bio-based reagents for silver nanoparticle (AgNP) production has gained much attention among researchers as it has paved the way for environmentally friendly approaches at low cost for synthesizing nanomaterials while maintaining their properties. In this study, Stellaria media aqueous extract was used for silver nanoparticle phyto-synthesis, and the resulting treatment was applied to textile fabrics to test its antimicrobial properties against bacteria and fungi strains. The chromatic effect was also established by determining the L*a*b* parameters. For optimizing the synthesis, different ratios of extract to silver precursor were tested using UV-Vis spectroscopy to observe the SPR-specific band. Moreover, the AgNP dispersions were tested for their antioxidant properties using chemiluminescence and TEAC methods, and the phenolic content was evaluated by the Folin-Ciocâlteu method. For the optimal ratio, values of average size, 50.11 ± 3.25 nm, zeta potential, -27.10 ± 2.16 mV, and polydispersity index, 0.209, were obtained via the DLS technique and zeta potential measurements. AgNPs were further characterized by EDX and XRD techniques to confirm their formation and by microscopic techniques to evaluate their morphology. TEM measurements revealed cvasi-spherical particles with sizes in the range of 10-30 nm, while SEM images confirmed their uniform distribution on the textile fiber surface.
Keyphrases
- silver nanoparticles
- low cost
- oxidative stress
- staphylococcus aureus
- wastewater treatment
- photodynamic therapy
- anti inflammatory
- gold nanoparticles
- escherichia coli
- working memory
- machine learning
- deep learning
- optical coherence tomography
- single molecule
- human health
- ionic liquid
- iron oxide
- smoking cessation
- solid state
- mass spectrometry
- combination therapy
- light emitting