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dc.contributor.authorAbbasi, E
dc.contributor.authorMilani, M
dc.contributor.authorFekri Aval, S
dc.contributor.authorKouhi, M
dc.contributor.authorAkbarzadeh, A
dc.contributor.authorTayefi Nasrabadi, H
dc.contributor.authorNikasa, P
dc.contributor.authorJoo, SW
dc.contributor.authorHanifehpour, Y
dc.contributor.authorNejati-Koshki, K
dc.contributor.authorSamiei, M
dc.date.accessioned2018-08-26T06:04:55Z
dc.date.available2018-08-26T06:04:55Z
dc.date.issued2016
dc.identifier.urihttp://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/41611
dc.description.abstractSilver nanoparticles size makes wide range of new applications in various fields of industry. Synthesis of noble metal nanoparticles for applications such as catalysis, electronics, optics, environmental and biotechnology is an area of constant interest. Two main methods for Silver nanoparticles are the physical and chemical methods. The problem with these methods is absorption of toxic substances onto them. Green synthesis approaches overcome this limitation. Silver nanoparticles size makes wide range of new applications in various fields of industry. This article summarizes exclusively scalable techniques and focuses on strengths, respectively, limitations with respect to the biomedical applicability and regulatory requirements concerning silver nanoparticles.
dc.language.isoEnglish
dc.relation.ispartofCritical reviews in microbiology
dc.subjectAnti-Infective Agents
dc.subjectBiotechnology
dc.subjectCatalysis
dc.subjectElectrochemical Techniques
dc.subjectMetal Nanoparticles
dc.subjectSilver
dc.titleSilver nanoparticles: Synthesis methods, bio-applications and properties.
dc.typearticle
dc.citation.volume42
dc.citation.issue2
dc.citation.spage173
dc.citation.epage80
dc.citation.indexPubmed
dc.identifier.DOIhttps://doi.org/10.3109/1040841X.2014.912200


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