LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Room temperature ferromagnetism in chemically synthesized dilute magnetic semiconducting (In0.95Mn0.05)2O3 nanoparticles

Photo from wikipedia

Single-phase nanocrystalline In2O3 doped with 5 atomic percent Mn produces dilute magnetic semiconductor (DMS). The material is synthesized by low temperature ‘pyrophoric reaction’ using nitrate salts and diethanolamine. The XRD… Click to show full abstract

Single-phase nanocrystalline In2O3 doped with 5 atomic percent Mn produces dilute magnetic semiconductor (DMS). The material is synthesized by low temperature ‘pyrophoric reaction’ using nitrate salts and diethanolamine. The XRD pattern at room temperature reveals the formation of cubic bixbyite structure of the oxide with nano-structured grain which is confirmed by FESEM. Magnetization data confirms ferromagnetic behavior at room temperature with gradual decrease in magnetization with rise of temperature. The phase transition occurred at 500 K is attributed to the transformation of ferromagnetic to paramagnetic state of the nanometric sample. Curie–Weiss inverse magnetic susceptibility [χ−1(T)] plot against temperature deduced the effective Bohr magneton (μeff) to be ~ 3.65 μB/Mn ion. Ferromagnetism may have generated from mixed valence states (Mn4+major /Mn3+minor) of Mn which is 3d element. Valence state was determined by chemical method using redox reaction between Fe2+and Mn4+/ Mn3+.

Keywords: dilute magnetic; temperature ferromagnetism; temperature; room temperature

Journal Title: Journal of Materials Science: Materials in Electronics
Year Published: 2020

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.