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Magnetic properties in ?-MnO? doped with alkaline elements.


ABSTRACT: ?-MnO2 nanotubes were fabricated using a hydrothermal technique. Li, Na and K ions were introduced into MnO2 nanotubes to tailor their magnetic properties. It was found that with a doping concentration lower than 12 at%, the nanotubes showed ferromagnetic-like ordering at low temperature (<50?K), while antiferromagnetic coupling dominated their physical behavior with doping concentrations beyond 12 at%. Such experimental phenomenon was in very good agreement with associated first principle calculations. The ferromagnetic-like ordering originates from the breaking of equivalence between two different Mn-O octahedrals in ?-MnO2 due to the filling of alkaline ions in the tunnels. Both small charge transfer and lattice distortion play important roles in the ferromagnetic ordering.

SUBMITTER: Tseng LT 

PROVIDER: S-EPMC4358028 | biostudies-literature | 2015 Mar

REPOSITORIES: biostudies-literature

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Magnetic properties in α-MnO₂ doped with alkaline elements.

Tseng Li-Ting LT   Lu Yunhao Y   Fan Hai Ming HM   Wang Yiren Y   Luo Xi X   Liu Tao T   Munroe Paul P   Li Sean S   Yi Jiabao J  

Scientific reports 20150313


α-MnO2 nanotubes were fabricated using a hydrothermal technique. Li, Na and K ions were introduced into MnO2 nanotubes to tailor their magnetic properties. It was found that with a doping concentration lower than 12 at%, the nanotubes showed ferromagnetic-like ordering at low temperature (<50 K), while antiferromagnetic coupling dominated their physical behavior with doping concentrations beyond 12 at%. Such experimental phenomenon was in very good agreement with associated first principle calcu  ...[more]

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