On-surface coordination chemistry of planar molecular spin systems: novel magnetochemical effects induced by axial ligandsElectronic supplementary information (ESI) available: experimental section; additional STM, XAS, XMCD and DFT + U data; evaluation of exchange coupling strength. See DOI: 10.1039/c2sc20828h
Paramagnetic transition-metal complexes assembled on surfaces are of great interest for potential applications in organic spintronics. The magnetochemical interactions of the spin of the metal centers with both ferromagnetic surfaces and optional axial ligands are yet to be understood. We use a comb...
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Sprache: | eng |
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Zusammenfassung: | Paramagnetic transition-metal complexes assembled on surfaces are of great interest for potential applications in organic spintronics. The magnetochemical interactions of the spin of the metal centers with both ferromagnetic surfaces and optional axial ligands are yet to be understood. We use a combination of X-ray magnetic circular dichroism (XMCD) and quantum-chemical simulations based on density functional theory (DFT +
U
) to investigate these metal-organic interfaces with chemically tunable magnetization. The interplay between an optional axial ligand (NO, spin
S
= 1/2 or NH
3
,
S
= 0) and Ni and Co ferromagnetic surfaces affecting the spin of Co(
ii
) tetraphenylporphyrin (d
7
,
S
= 1/2), Fe(
ii
) tetraphenylporphyrin (d
6
,
S
= 1), Mn(
ii
) tetraphenylporphyrin (d
5
,
S
= 5/2) and Mn(
ii
) phthalocyanine (d
5
,
S
= 3/2) is studied. We find that the structural
trans
effect on the surface rules the molecular spin state, as well as the sign and strength of the exchange interaction with the substrate. We refer to this observation as the surface spin-
trans
effect.
The "surface-ligand" and the external ligand determine the spin state and the strength and sign of the exchange interaction. |
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ISSN: | 2041-6520 2041-6539 |
DOI: | 10.1039/c2sc20828h |