Kinetics and mechanism of ligand substitution in β-diketone complexes of iron(III). Solvolysis controlling the substitution process in alcohol media
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference33 articles.
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2. Magnetostructural correlations in magnetically coupled (.mu.-oxo)diiron(III) complexes
3. Angular and Distance Dependence of the Magnetic Properties of Oxo-Bridged Iron(III) Dimers
4. Synthesis, crystal structures and magnetic characterization of four β-diketonate-alkoxide iron(III) dimers. Dependence of the magnetic properties on geometrical and electronic parameters
5. Kinetics of ligand substitution in bis(N-tert-butylsalicylaldiminato)copper(II) in various alcoholic media: mechanism of the solvent path
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1. UV-Vis Spectroscopy, Electrochemical and DFT Study of Tris(β-diketonato)iron(III) Complexes with Application in DSSC: Role of Aromatic Thienyl Groups;Molecules;2022-06-10
2. VOLATILE IRON(III) COMPLEXES WITH A METHOXY-SUBSTITUTED β-DIKETONATE;Journal of Structural Chemistry;2022-04
3. Fe-Catalyzed C–C Bond Construction from Olefins via Radicals;Journal of the American Chemical Society;2017-02-02
4. Electronic Influence of Different β-Diketonato Ligands on the Electrochemical Behaviour of Tris(β-Diketonato)M(III) Complexes, M = Cr, Mn and Fe;Journal of Nano Research;2016-11
5. Solvent effects on Grubbs’ pre-catalyst initiation rates;Dalton Trans.;2013
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