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Synthesis, characterization and mechanistic insights of mycogenic iron oxide nanoparticles

  • Arpit Bhargava
  • , Navin Jain
  • , L. Manju Barathi
  • , Mohd Sayeed Akhtar
  • , Yeoung Sang Yun
  • , Jitendra Panwar
  • Birla Institute of Technology and Science Pilani
  • Jimma University Ethiopia

Research output: Contribution to conferenceChapterpeer-review

Abstract

In the present study, extracellular synthesis of iron oxide nanoparticles (IONPs)was achieved using Aspergillus japonicus isolate AJP01. The isolate demonstrated its ability to hydrolyze the precursor salt solution, a mixture of iron cyanide complexes, under ambient conditions. Hydrolysis of these complexes released ferric and ferrous ions, which underwent protein-mediated coprecipitation and controlled nucleation resulting in the formation of IONPs. Transmission electron microscopy, selected area electron diffraction pattern, energy dispersive spectroscopy and grazing incidence X-ray diffraction analysis confirmed the mycosynthesis of IONPs. The synthesized particles were cubic in shape with a size range of 60–70 nmwith crystal structure corresponding to magnetite. Scanning electron microscopy analysis revealed the absence of IONPs on fungal biomass surface, indicating the extracellular nature of synthesis. Fourier transform infrared spectroscopy confirmed the presence of proteins on as-synthesised IONPs, which may confer their stability. Preliminary investigation indicated the role of proteins in the synthesis and stabilization of IONPs. On the basis of present findings, a probable mechanism for synthesis of IONPs is suggested. The simplicity and versatility of the present approach can be utilized for the synthesis of other nanomaterials.

Original languageEnglish
Title of host publicationNanotechnology for Sustainable Development, First Edition
PublisherSpringer International Publishing
Pages337-348
Number of pages12
ISBN (Electronic)9783319050416
ISBN (Print)9783319050409
DOIs
StatePublished - 2014.01.1

Keywords

  • Aspergillus japonicas
  • Biosynthesis
  • Extracellular proteins
  • Iron oxide nanoparticles
  • Nanobiotechnology
  • Soil fungi

Quacquarelli Symonds(QS) Subject Topics

  • Biological Sciences

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