Variable-Temperature and -Pressure Multinuclear Magnetic Resonance Studies on Solvent Exchange of Cobalt(II), Iron(II), and Manganese(II) Ions in Ethylenediamine. Kinetic Chelate Effect and Chelate Strain Effect

Sen Ichi Aizawa, Kayoko Matsuda, Tomomi Tajima, Machiyo Maeda, Takashi Sugata, Shigenobu Funahashi*

*Corresponding author for this work

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25 Scopus citations

Abstract

Variable-temperature and -pressure NMR measurements of ethylenediamine exchange on Co2+, Fe2+, and Mn2+ in neat ethylenediamine (en) as a bidentate solvent have been performed by the 14N, 13C, and 1H NMR line-broadening technique. The solvent exchange rate constant at 298 K (kex298/s−1), activation enthalpy (ΔH/kJ mor−1), activation entropy (ΔS/J mol−1 K−1), and activation volume (ΔV*/cm3 mol−1) for the ethylenediamine exchange reaction on each metal ion are respectively as follows: 5.4 × 103, 56.5 ± 3.3, 16 ± 10, and 0.9 ± 0.9 for Co2+; 4.3 × 104, 46.3 ± 1.4, −1 ± 4, and −1.2 ± 0.8 for Fe2+; 1.7 × 106, 24.7 ± 1.6, −43 ± 5, and −0.6 ± 0.5 for Mn2+. The exchange rate constants are smaller than available rate constants in monodentate solvents for the corresponding metal(II) ions. The variation in values of kex298 and ΔH for the en exchange along the series from Ni2+ to Mn2+ is more drastic than that for monodentate solvent exchange. The values of ΔV in en indicate no changeover of the mechanism from a dissociative interchange (Id) for Ni2+ to an associative interchange (Ia) for Mn2+ as observed for monodentate solvent exchange. Such characteristic features for en exchange have been explained in terms of the chelate effect and chelate strain effect of the bidentate en molecule.

Original languageEnglish
Pages (from-to)2042-2047
Number of pages6
JournalInorganic Chemistry
Volume34
Issue number8
DOIs
StatePublished - 1995/04/01

ASJC Scopus subject areas

  • Physical and Theoretical Chemistry
  • Inorganic Chemistry

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