Synthetic, structural and magnetic implications of introducing 2,2'-dipyridylamide to sodium-ferrate complexes

Using a transamination approach to access novel Fe(ii) complexes, this study presents the synthesis, X-ray crystallographic and magnetic characterisation of a series of new iron complexes containing the multifunctional 2,2-dipyridylamide (DPA) ligand using iron bis(amide) [{Fe(HMDS) } ] and sodium f...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2017-05, Vol.46 (20), p.6683-6691
Hauptverfasser: Maddock, Lewis C H, Borilovic, Ivana, McIntyre, Jamie, Kennedy, Alan R, Aromí, Guillem, Hevia, Eva
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Sprache:eng
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Zusammenfassung:Using a transamination approach to access novel Fe(ii) complexes, this study presents the synthesis, X-ray crystallographic and magnetic characterisation of a series of new iron complexes containing the multifunctional 2,2-dipyridylamide (DPA) ligand using iron bis(amide) [{Fe(HMDS) } ] and sodium ferrate [{NaFe(HMDS) } ] (1) as precursors (HMDS = 1,1,1,3,3,3-hexamethyldisilazide). Reactions of DPA(H) with 1 show exceptionally good stoichiometric control, allowing access to heteroleptic [(THF) ·NaFe(DPA)(HMDS) ] (3) and homoleptic [{THF·NaFe(DPA) } ] (4) by using 1 and 3 equivalents of DPA(H), respectively. Linking this methodology and co-complexation, which is a more widely used approach to prepare heterobimetallic complexes, 3 can also be prepared by combining NaHMDS with heteroleptic [{Fe(DPA)(HMDS)} ] (2). In turn, 2 has been also synthesised and structurally defined by reacting [{Fe(HMDS) } ] with two equivalents of DPA(H). Structural studies demonstrate the coordination flexibility of the N-bridged bis(heterocycle) ligand DPA, with 2 and 3 exhibiting discrete monomeric motifs, whereas 4 displays a much more intricate supramolecular structure, with one of its DPA ligands coordinating in an anti/anti fashion (as opposed to 2 and 3 where DPA shows a syn/syn conformation), which facilitates propagation of the structure via its central amido N. Magnetic studies confirmed the high-spin electron configuration of the iron(ii) centres in all three compounds and revealed the existence of weak ferromagnetic interactions in dinuclear compound 2 (J = 1.01 cm ).
ISSN:1477-9226
1477-9234
DOI:10.1039/c7dt01319a