Abbasi Elham, Milani Morteza, Fekri Aval Sedigheh, Kouhi Mohammad, Akbarzadeh Abolfazl, Tayefi Nasrabadi Hamid, Nikasa Parisa, Joo San Woo, Hanifehpour Younes, Nejati-Koshki Kazem, Samiei Mohammad
a Department of Medical Nanotechnology, Faculty of Advanced Medical Sciences , Tabriz University of Medical Sciences , Tabriz , Iran .
c Department of Molecular Medicine, Faculty of Advanced Medical Sciences , Tabriz University of Medical Sciences , Tabriz , Iran .
Crit Rev Microbiol. 2016;42(2):173-80. doi: 10.3109/1040841X.2014.912200. Epub 2014 Jun 17.
Silver 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.
银纳米颗粒的尺寸使其在工业的各个领域有广泛的新应用。合成用于催化、电子、光学、环境和生物技术等应用的贵金属纳米颗粒是一个一直备受关注的领域。制备银纳米颗粒的两种主要方法是物理方法和化学方法。这些方法的问题在于它们会吸附有毒物质。绿色合成方法克服了这一局限性。银纳米颗粒的尺寸使其在工业的各个领域有广泛的新应用。本文专门总结了可扩展技术,并分别关注其优势以及在生物医学适用性方面的局限性和有关银纳米颗粒的监管要求。