English

Suppression of the N\'eel temperature in hydrothermally synthesized alpha-Fe2O3 nanoparticles

Mesoscale and Nanoscale Physics 2015-05-20 v1

Abstract

Magnetic measurements up to 1000 K have been performed on hydrothermally synthesized α\alpha-Fe2_{2}O3_{3} nanoparticles (60 nm) using a Quantum Design vibrating sample magnetometer. A high vacuum environment (1×\times105^{-5} torr) during the magnetic measurement up to 1000 K leads to a complete reduction of α\alpha-Fe2_{2}O3_{3} to Fe3_{3}O4_{4}. This precludes the determination of the N\'eel temperature for the α\alpha-Fe2_{2}O3_{3} nanoparticles. In contrast, coating α\alpha-Fe2_{2}O3_{3} nanoparticles with SiO2_{2} stabilizes the α\alpha-Fe2_{2}O3_{3} phase up to 930 K, which allows us to determine the N\'eel temperature of the α\alpha-Fe2_{2}O3_{3} nanoparticles for the first time. The N\'eel temperature of the 60-nm α\alpha-Fe2_{2}O3_{3} nanoparticles is found to be 945 K, about 15 K below the bulk value. The small reduction of the N\'eel temperature of the α\alpha-Fe2_{2}O3_{3} nanoparticles is consistent with a finite-size scaling theory. Our current results also show that coating nanoparticles with SiO2_{2} can effectively protect nanoparticles from oxidation or reduction, which is important to technological applications.

Keywords

Cite

@article{arxiv.1010.5294,
  title  = {Suppression of the N\'eel temperature in hydrothermally synthesized alpha-Fe2O3 nanoparticles},
  author = {Jun Wang and Wei Wu and Fan Zhao and Guo-meng Zhao},
  journal= {arXiv preprint arXiv:1010.5294},
  year   = {2015}
}

Comments

5 pages, 5 figures