4.6 Article

Metal-free half-metallicity in a high energy phase C-doped gh-C3N4 system: a high Curie temperature planar system

期刊

JOURNAL OF MATERIALS CHEMISTRY C
卷 4, 期 48, 页码 11530-11539

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c6tc04163a

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  1. DST-SERB, New Delhi [EMR/2015/002057]
  2. UGC

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Metal free half-metallicity has been the subject of intense research in the field of spintronics devices. Using density functional theoretical calculations, atomically thin graphitic heptazine carbon nitride (gh-C3N4) based systems are studied for possible spintronics application. Ferromagnetism is observed in all of the C-doped gh-C3N4 systems due to hole injection. However, a high energy phase of C-doped gh-C3N4 (C-N2@ gh-C3N4) shows strong half-metallicity with a Curie temperature as high as similar to 400 K. The calculated Curie temperature is noticeably higher than the metal-free based half-metallic systems studied to date. Thereby, such a ferromagnetic half-metallic system with a high Curie temperature can be promising for high temperature spintronics applications.

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