Publication | Closed Access
Aqueous phase synthesis of copper nanoparticles: a link between heavy metal resistance and nanoparticle synthesis ability in bacterial systems
184
Citations
49
References
2012
Year
EngineeringMetal NanoparticlesAqueous Phase SynthesisCopper NanoparticlesChemistryChemical EngineeringHeavy Metal ResistanceAqueous PhaseEnvironmental MicrobiologyAqueous Phase BiosynthesisPure Copper NanoparticlesNanotechnologyElectrochemistryNanomaterialsBioactive MetalMetalloproteinBiotechnologyGreen SynthesisMicrobiology
We demonstrate aqueous phase biosynthesis of phase-pure metallic copper nanoparticles (CuNPs) using a silver resistant bacterium Morganella morganii. This is particularly important considering that there has been no report that demonstrates biosynthesis and stabilization of pure copper nanoparticles in the aqueous phase. Electrochemical analysis of bacterial cells exposed to Cu(2+) ions provides new insights into the mechanistic aspect of Cu(2+) ion reduction within the bacterial cell and indicates a strong link between the silver and copper resistance machinery of bacteria in the context of metal ion reduction. The outcomes of this study take us a step closer towards designing rational strategies for biosynthesis of different metal nanoparticles using microorganisms.
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