Silver (Ag)/montmorillonite (Mt) heterostructures were effectively synthesized utilising microwave (MW) irradiation technique in the absence of any reducing agent. Compared to conventional thermal reduction processes, this approach is simple, faster and environmentally friendly. The MW process yielded Mt surfaces with uniformdistribution of Ag nanoparticleswith an average size of 8–10 nm. The presence of reducing agents was found to inhibit the formation of Ag nanoparticles inMWsynthesis. The method was also successfully used for the preparation of Ag/organically modified Mt. However, the transmission electron microscopy analysis showed that, on the surface ofMt which is organicallymodified, the Ag nanoparticles have a tendency to aggregate forming bigger Ag clusters. The nanostructures prepared by theMWassisted method showed substantially higher levels of antimicrobial properties against Gram-positive bacteria, i.e., S. aureus and B. cereus as well as Gram-negative bacteria namely E. coli, P. aeruginosa and S. enterica.
Reference:
Kesavan Pillai, S., Ray, S.S., Scriba, M., Bandyopadhyay, J., Roux-van der Merwe, M.P. and Badenhorst, J. 2013. Microwave assisted green synthesis and characterization of silver/montmorillonite heterostructures with improved antimicrobial properties. Applied Clay Science, vol. 83-84, pp 315-321
Kesavan Pillai, S., Ray, S. S., Scriba, M. R., Bandyopadhyay, J., Roux-van der Merwe, M., & Badenhorst, J. (2013). Microwave assisted green synthesis and characterization of silver/montmorillonite heterostructures with improved antimicrobial properties. http://hdl.handle.net/10204/7101
Kesavan Pillai, Sreejarani, Suprakas S Ray, Manfred R Scriba, J Bandyopadhyay, MP Roux-van der Merwe, and J Badenhorst "Microwave assisted green synthesis and characterization of silver/montmorillonite heterostructures with improved antimicrobial properties." (2013) http://hdl.handle.net/10204/7101
Kesavan Pillai S, Ray SS, Scriba MR, Bandyopadhyay J, Roux-van der Merwe M, Badenhorst J. Microwave assisted green synthesis and characterization of silver/montmorillonite heterostructures with improved antimicrobial properties. 2013; http://hdl.handle.net/10204/7101.