To realize the origin of efficient spin injection at organic-ferromagnetic contact in organic spintronics, we have implemented the formation of quasi-molecular magnet via surface restructuring of a strong organic acceptor, tetrafluoro-tetracyano-quinodimethane (F4-TCNQ), in contact with ferromagnetic cobalt. Our results demonstrate a spin-polarized F4-TCNQ layer and a remarkably enhanced magnetic anisotropy of the Co film. The novel magnetic properties are contributed from strong magnetic coupling caused by the molecular restructuring that displays an angular anchoring conformation of CN and upwardly protruding fluorine atoms. We conclude that the π bonds of CN, instead of the lone-pair electrons of N atoms, contribute to the hybridization-...
Spinterface engineering has shown quite important roles in organic spintronics as it can improve spi...
Molecular semiconductors may exhibit antiferromagnetic correlations well below room temperature. Alt...
Organic charge-transfer ferromagnets have been studied for many years, and numerous breakthroughs ha...
International audienceWe demonstrate that a C-60 overlayer enhances the perpendicular magnetic aniso...
We have performed systematic first-principles calculations to tailor the magnetic properties at a hy...
High coercivity magnets are an important resource for renewable energy, electric vehicles, and memor...
Understanding the interaction of organic molecules adsorbed on magnetic surfaces has shown considera...
Metal-phthalocyanines are quasi-planar heterocyclic macrocycle molecules with a highly conjugated st...
Organic molecules adsorbed on magnetic surfaces offer the possibility to merge the concepts of molec...
Organic molecules adsorbed on magnetic surfaces offer the possibility to merge the concepts of molec...
Most materials in magnetic applications are based on inorganic materials. Recently, however, organic...
Interfacial effects like orbital hybridization and charge transfer strongly influence the transfer o...
Historically most materials in magnetic applications are based on inorganic materials. Recently, how...
Journal ArticleUnlike common ferromagnets such as iron, nickel, cobalt or even cobalt-samarium and ...
Molecular spintronics aims to manipulate spins by a combination of molecules and magnetic substrate....
Spinterface engineering has shown quite important roles in organic spintronics as it can improve spi...
Molecular semiconductors may exhibit antiferromagnetic correlations well below room temperature. Alt...
Organic charge-transfer ferromagnets have been studied for many years, and numerous breakthroughs ha...
International audienceWe demonstrate that a C-60 overlayer enhances the perpendicular magnetic aniso...
We have performed systematic first-principles calculations to tailor the magnetic properties at a hy...
High coercivity magnets are an important resource for renewable energy, electric vehicles, and memor...
Understanding the interaction of organic molecules adsorbed on magnetic surfaces has shown considera...
Metal-phthalocyanines are quasi-planar heterocyclic macrocycle molecules with a highly conjugated st...
Organic molecules adsorbed on magnetic surfaces offer the possibility to merge the concepts of molec...
Organic molecules adsorbed on magnetic surfaces offer the possibility to merge the concepts of molec...
Most materials in magnetic applications are based on inorganic materials. Recently, however, organic...
Interfacial effects like orbital hybridization and charge transfer strongly influence the transfer o...
Historically most materials in magnetic applications are based on inorganic materials. Recently, how...
Journal ArticleUnlike common ferromagnets such as iron, nickel, cobalt or even cobalt-samarium and ...
Molecular spintronics aims to manipulate spins by a combination of molecules and magnetic substrate....
Spinterface engineering has shown quite important roles in organic spintronics as it can improve spi...
Molecular semiconductors may exhibit antiferromagnetic correlations well below room temperature. Alt...
Organic charge-transfer ferromagnets have been studied for many years, and numerous breakthroughs ha...