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Novel Magnetic Properties of Single-Crystalline Bi_2Fe_4O_9 Nanosheets by Electron Spin Resonance

Novel Magnetic Properties of Single-Crystalline Bi_2Fe_4O_9 Nanosheets by Electron Spin Resonance
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摘要 Magnetic properties of single-crystalline preferential {001}-oriented Bi2Fe4O9nanosheets with thickness of about 13 nm, synthesized via a facile hydrothermal method, have been investigated through variable temperature electron spin resonance measurement. A typical ferromagnetic state could be appeared in the measured temperature from 110 K to 300 K and the origin would be contributed to uncompensated surface spin due to its large surface-to-volume ratio and/or a few non-detectable impurities with strong magnetism. Interestingly, another weak ferromagnetic state could present below the temperature about 250 K, indicative of Neel temperature (TN) of antiferromagnetic state, which is slightly lower than that of bulksample of 265 K. Magnetic properties of single-crystalline preferential {001}-oriented Bi2Fe4O9nanosheets with thickness of about 13 nm, synthesized via a facile hydrothermal method, have been investigated through variable temperature electron spin resonance measurement. A typical ferromagnetic state could be appeared in the measured temperature from 110 K to 300 K and the origin would be contributed to uncompensated surface spin due to its large surface-to-volume ratio and/or a few non-detectable impurities with strong magnetism. Interestingly, another weak ferromagnetic state could present below the temperature about 250 K, indicative of Neel temperature (TN) of antiferromagnetic state, which is slightly lower than that of bulksample of 265 K.
出处 《矿物学报》 CAS CSCD 北大核心 2013年第S1期117-117,共1页 Acta Mineralogica Sinica
关键词 MAGNETIC NANOMATERIALS HYDROTHERMAL methods electron SPIN resonance magnetic nanomaterials hydrothermal methods electron spin resonance
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