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Room Temperature Co-Precipitation Synthesis of Magnetite Nanoparticles in a Large pH Window with Different Bases

Materials · 2013 · Vol. 6(12) · pp. 5549–5567
Maria Cristina MascoloYongbing PeiTerry A. Ring

Abstract

Magnetite nanoparticles (Fe₃O₄) represent the most promising materials in medical applications. To favor high-drug or enzyme loading on the nanoparticles, they are incorporated into mesoporous materials to form a hybrid support with the consequent reduction of magnetization saturation. The direct synthesis of mesoporous structures appears to be of interest. To this end, magnetite nanoparticles have been synthesized using a one pot co-precipitation reaction at room temperature in the presence of different bases, such as NaOH, KOH or (C₂H₅)₄NOH. Magnetite shows characteristics of superparamagnetism at room temperature and a saturation magnetization (Ms) value depending on both the crystal size and the degree of agglomeration of individual nanoparticles. Such agglomeration appears to be responsible for the formation of mesoporous structures, which are affected by the pH, the nature of alkali, the slow or fast addition of alkaline solution and the drying modality of synthesized powders.

Iron oxide chemistry and applicationsMagnetic Properties and Synthesis of FerritesNanoparticle-Based Drug DeliveryMagnetiteMagnetite NanoparticlesPrecipitationNanoparticleWindow (computing)Materials scienceChemical engineeringCoprecipitationNanotechnologyMagnetic nanoparticles

Funding

  • University of Utah
  • Abdus Salam International Centre for Theoretical Physics
  • Institute of Molecular and Cell Biology
Citations
596
FWCI
7.69
field-weighted impact
References
43
Percentile
98%
vs. same field & year
Citations per year
References
Targeted drug delivery via the folate receptor
Advanced Drug Delivery Reviews · 2000 · 1,457 citations
Size-Controlled Synthesis of Magnetite Nanoparticles
Journal of the American Chemical Society · 2002 · 2,797 citations
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