Synthesis of Biogenic Silver Nanoparticles Aerial Part Extract

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Synthesis of Biogenic Silver Nanoparticles Aerial Part Extract ( synthesis-biogenic-silver-nanoparticles-aerial-part-extract )

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Nanomaterials 2020, 10, 638 14 of 17 Nanomaterials 2020, 10, x FOR PEER REVIEW 14 of 17 Figure 8. Antioxidant activity of biosynthesized AgCl-NPs from the Pulicaria vulgaris aerial part Figure 8. Antioxidant activity of biosynthesized AgCl-NPs from the Pulicaria vulgaris aerial part extract. extract. 4. Conclusions 4. Conclusion The current study demonstrated the application of ethanolic extracts of Pulicaria vulgaris Gaertn. aerial parts for one-stage synthesis of AgCl-NPs in a cost-effective, simple, and environmentally The current study demonstrated the application of ethanolic extracts of Pulicaria vulgaris friendly way at room temperature. Results showed that the P. vulgaris extract contained organic Gaertn. aerial parts for one-stage synthesis of AgCl-NPs in a cost-effective, simple, and compounds such that functional groups possibly can act as both reducing and stabilizing agents in the environmentally friendly way at room temperature. Results showed that the P. vulgaris extract biosynthesis of AgCl-NPs. Biosynthesized AgCl-NPs revealed the LSPR absorption band at 460 nm, contained organic compounds such that functional groups possibly can act as both reducing and and had the average particle size of 28.6 nm, as measured based on TEM images and the XRD pattern. stabilizing agents in the biosynthesis of AgCl-NPs. Biosynthesized AgCl-NPs revealed the LSPR They showed significant antibacterial, antifungal, and antioxidant activates, and had synergetic effects absorption band at 460 nm, and had the average particle size of 28.6 nm, as measured based on in combination with a conventional antibiotic and a fungicide, amoxicillin and fluconazole, against TEM images and the XRD pattern. They showed significant antibacterial, antifungal, and the tested bacterial and fungal pathogens. These convenient properties of our biogenic AgCl-NPs antioxidant activates, and had synergetic effects in combination with a conventional antibiotic and a mean that they could successfully be used as appropriate biocidal agents in biomedical and food fungicide, amoxicillin and fluconazole, against the tested bacterial and fungal pathogens. These industry applications. convenient properties of our biogenic AgCl-NPs mean that they could successfully be used as appropriate biocidal agents in biomedical and food industry applications. Author Contributions: Conceptualization, M.S.-R.; methodology, M.S.-R.; validation, M.S.-R.; formal analysis, M.S.-R. and P.P.; investigation, M.S.-R.; resources, M.S.-R.; data curation, M.S.-R. and P.P.; writing—original draft Author Contributions: Conceptualization, M.S.-R..; methodology, M.S.-R.; validation, M.S.-R.; formal analysis, preparation, M.S.-R.; writing—review and editing, M.S.-R. and P.P.; visualization, M.S.-R.; supervision, M.S.-R. M.S.-R. and P.P.; investigation, M.S.-R.; resources, M.S.-R.; data curation, M.S.-R. and P.P.; writing—original and P.P.; project administration, M.S.-R.; funding acquisition, M.S.-R. All authors have read and agreed to the draft preparation, M.S.-R.; writing—review and editing, M.S.-R. and P.P; visualization, M.S.-R.; supervision, published version of the manuscript. M.S.-R. and P.P.; project administration, M.S.-R.; funding acquisition, M.S.-R. All authors have read and agreed Funding: This research was funded by the University of Zabol, Zabol, Iran (grant number: UOZ-GR-9618-8). to the published version of the manuscript. Conflicts of Interest: The authors declare no financial or other conflicts of interest. Funding: This research was funded by the University of Zabol, Zabol, Iran (grant number: UOZ-GR-9618-8). References Conflict of interest: The authors declare no financial or other conflicts of interest. 1. Manivasagan, P.; Kim, S.K. Marine Algae Extracts: Processes, Products, and Applications; Kwon Kim, S., References Chojnacka, K., Eds.; Wiley: Weinheim, Germany, 2015; pp. 295–304. 2. Roduner, E. Size matters: Why nanomaterials are different. Chem. Soc. Rev. 2006, 35, 583–592. [CrossRef] 1. Manivasagan, P.; Kim, S.K. In Marine Algae Extracts: Processes, Products, and Applications; Kwon Kim, S., [PubMed] Chojnacka, K., Eds.; Wiley: Weinheim, Germany, 2015; pp. 295–304. 3. Cushing, B.L.; Kolesnichenko, V.L.; O’Connor, C.J. Recent advances in the liquid-phase syntheses of inorganic 2. Roduner, E. Size matters: Why nanomaterials are different. Chem. Soc. Rev. 2006, 35, 583–592. nanoparticles. Chem. Rev. 2004, 104, 3893–3946. [CrossRef] [PubMed] 3. Cushing, B.L.; Kolesnichenko, V.L.; O’Connor, C.J. Recent advances in the liquid-phase syntheses of inorganic nanoparticles. Chem. Rev. 2004, 104, 3893–3946.

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