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The anti-tarnishing ability of the film on the silver was evaluated by electrochemical measurements in 0.5 mol/L NaCl solution containing 10 mmol/L Na2S.
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Anticancer activity of silver nanoparticles was evaluated on MCF-7 cells in comparison to ionic silver salt.
In a similar study, the residual antimicrobial activity of a silver disinfectant was evaluated against antibiotic- and biocide-resistant bacteria also after water rinsing.
The anti-bacterial performance of the silver coatings was evaluated with Pseudomonas aeruginosa PA01, which frequently causes medical device-associated infections.
The antibacterial susceptibility of silver nanoparticles was evaluated using the zone inhibition method.
The antibacterial activity of biologically synthesized silver nanoparticles was evaluated against E. coli pathogen.
Antibacterial property of the ramie fibers treated with silver nanoparticles was evaluated.
So, the effect of extraction time on the extraction of silver ions was evaluated in the range of 4 20 min.
The effect of centrifugation time on extraction of silver ions was evaluated in the range of 3 9 min, while all of the experimental parameters were kept constant.
The antimicrobial activity of silver nanoparticles was evaluated against Gram-positive Staphylococcus aureus and Lactobacillus and Gram-negative Escherichia coli and Pseudomonas fluorescens by the disc method.
The mutagenic potential of silver nanoparticles was evaluated in embryonic fibroblasts (MEF-LacZ) and supports our findings (Park et al., 2011).
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