Published July 2019 | Version v1
Journal article

Magnetic and heating aptitudes of PEG coated L a 0.73 S r 0.27 M n O 3 and L a 0.67 S r 0.33 M n O 3 mediators towards hyperthermia methodology

  • 1. Department of Physics, RIPHAH International University, Islamabad 44000 (Pakistan)
  • 2. Magnetism Laboratory, Department of Physics, COMSATS University, Islamabad 44000 (Pakistan)

Description

HIghlights• Polyethylene glycol (PEG) coated Perovskite structured (La1xSrxMnO3) two Sr contents (x = 0.27 & 0.33) were prepared for hyperthermia applications. • LSMOs synthesized were found to be in the super-paramagnetic (SPM) regime having an approximate size of ∼17 nm revealed by XRD. The polymer showed an efficient surface attachemnt with NP's as disclosed by FTIR. • The NPss have very slight coercivity and appreciable saturation magnetization at room temperature. PEG attachment with LSMOs were revealed by TGA and DTA studies. • The NPs displayed quite an appreciable approach towards required Hyperthermia range (40–60 °C) shown by their induction heating behaviours under an external a.c. field. • The coated NPs were dispersed in normal saline as an innovative try forming a ferrofluid (∼19 mg/mL) and showed considerable approach towards induction heating for hyperthermia efficacy. In the present study functionalized mediator of Lanthanum strontium manganite (LSMO) has been investigated for magnetic fluid hyperthermia (MFH) applications. Perovskite structured (La1xSrxMnO3) employing two Sr concentrations (x = 0.27 & 0.33) were attempted to coat with long chain structured polymer named Polyethylene glycol (PEG- 6000 g/mol) by adopting novel concentrations (5% & 14% w/v) in order to assess a detailed comparison of the effect of concentration of same coating material on two different LSMO's series. The Citrate-gel route was adopted to synthesize LSMOs nanoparticles (NPs). XRD revealed the super-paramagnetic (SPM) nature of synthesized NPs showing an approximate crystallite size of ∼17 nm. The LSMOs tailored with PEG showed an effective bonding of polymer with NPs exhibited by FTIR spectra. The magnetic parameters of coated NPs subjected to VSM at room temperature displayed an appreciable saturation magnetization and very slight coercivity owing to their SPM behaviour. During each synthesis, the relative proportions of polymer attached to LSMOs were evaluated through TGA analysis accompanied by DTA studies showing successive decomposition processes. The induction heating behaviours of NPs under an external radio frequency field displayed quite an appreciable approach for required Hyperthermia efficacy in the required range of 40–60 °C. Besides this, the coated NPs were dispersed in normal saline as an innovative try forming a ferro-fluid (∼19 mg/ml) and showed considerable approach towards induction heating for the destruction of cancerous cells employing hyperthermia methodology.

Additional details

Identifiers

DOI
10.1016/j.physb.2019.03.039;
PII
S0921452619302157;

Publishing Information

Journal Title
Physica. B, Condensed Matter
Journal Volume
564
Journal Page Range
p. 125-132
ISSN
0921-4526
CODEN
PHYBE3

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Copyright
Copyright (c) 2019 Elsevier B.V. All rights reserved.