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1.
Phys Chem Chem Phys ; 21(29): 16213-16222, 2019 Jul 24.
Artigo em Inglês | MEDLINE | ID: mdl-31298246

RESUMO

The electronic structure and magnetic properties of ten formamidinium transition metal iodides in the ground state and under strain have been studied. These formamidinium transition metal iodides have a stable cubic perovskite structure. In the ground state, FAVI3 is a spin gapless semiconductor, and FAScI3, FATiI3, FACrI3, FAFeI3, FACoI3 and FANiI3 are ferromagnetic half-metals. They all have 100% spin polarization and integer total magnetic moment. Under the action of strain, the high spin polarization of some formamidinium transition metal iodides can still be well maintained, and several novel spin gapless semiconductors such as FATiI3, FAFeI3 and FACoI3 have been discovered. Magnetic studies show that these formamidinium transition metal iodides with half-metal, semiconductor and spin-gapless semiconductor properties have integral total magnetic moments under strain ranging from -10.0% to 10.0%. These newly discovered half-metallic ferromagnetic materials and spin gapless semiconductors have broad application prospects in the field of spintronics due to their high spin polarization.

2.
Acta Crystallogr Sect E Struct Rep Online ; 64(Pt 1): o344, 2007 Dec 21.
Artigo em Inglês | MEDLINE | ID: mdl-21200906

RESUMO

The title compound, C(10)H(11)N(3)O(4), is a condensation product of 4-nitro-phenyl-hydrazine and methyl pyruvate. The complete mol-ecule except for the methyl groups can be considered as a conjugated π system. All non-H atoms are approximately coplanar (r.m.s. deviation 0.117 Å). The crystal packing involves an N-H⋯O hydrogen bond and a π-π inter-action between the aromatic rings, with a centroid-centroid distance of 3.617 Å.

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