Advances in Materials Science and Engineering · 2016 · 152 citations · 38 references
NanoparticlesEngineeringMetal NanoparticlesGreen ChemistryBio-based NanomaterialsChemistryNanomaterials SynthesisChemical EngineeringApple ExtractGreen NanotechnologyFood NanotechnologyNanoparticle CharacterizationBiological NanomaterialsFood PreservativesColor ChangeBiomanufacturingAntibacterial PropertiesNanomaterialsSilver NanoparticlesGreen SynthesisMicrobiologyMedicine
Silver nanoparticles (AgNPs) were synthesized using apple extract as a reducing agent and aqueous silver nitrate as the precursor. The AgNPs formation was observed as a color change of the mixture from colorless to dark-brownish. The X-ray diffraction pattern confirmed the presence of only Ag crystallites, and the dynamic light scattering estimates the average sizes of the AgNPs to be 30.25 ± 5.26 nm. Furthermore, Fourier Transform Infrared as well as UV-vis spectroscopy identifies ethylene groups as the reducing agent and capping agent for the formation of the AgNPs. This green synthesis provides an economic, eco-friendly, and clean synthesis route to AgNPs. AgNPs in suspension showed activity against Gram-negative and Gram-positive bacteria with minimum bactericidal concentrations (MBCs) to be in the range from 125 μ g/mL to 1000 μ g/mL.
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Sukdeb Pal, Yu Kyung Tak, Joon Myong Song · Applied and Environmental Microbiology · 2007 · 4K citations · Full text
Nanoparticles, Nanoparticle Characterization, Agar Plates +15
Michelle Duval Malinsky, K. Lance Kelly, George C. Schatz et al. · Journal of the American Chemical Society · 2001 · 1.1K citations