Complexation thermodynamics of lanthanides with 2-thenoyltrifluoroacetone in a room temperature ionic liquid. Part-II: calorimetry and MD simulation studies†‡
Abstract
The complexation thermodynamics of 2-thenoyltrifluoroacetone (HTTA) with lanthanide cations was investigated in 1-butyl-3-methylimidazolium bis(trifluoromethanesulfonyl)imide (Bumim·Tf2N) medium by liquid–liquid extraction and microcalorimetry. The Eu3+ ion distribution ratio measurement from aqueous pH 3.5 to 5.2 confirmed the extraction of anionic species of the type Ln(TTA)4−, and this species did not change with pH. Measurement of direct heat of complexation between Nd3+ and HTTA confirmed endothermic complexation reactions with ΔH° values of 4.81, 17.4, 23.3 and 37.9 kJ mol−1 for Nd(TTA)2+, Nd(TTA)2+, Nd(TTA)3 and Nd(TTA)4− species, respectively. The complexation was favoured by positive stepwise entropy changes of 128, 134, 94 and 112 J mol−1 K−1 for ML1, ML2 ML3 and ML4 species, respectively. The overall extraction enthalpy of the Ln(TTA)4− complex into Bumim·Tf2N was also endothermic with a ΔH° value of 42.5 kJ mol−1. The enthalpy change for mass transfer of the Ln(TTA)4− complex into Bumim·Tf2N was estimated to be 4.6 kJ mol−1, indicating that the overall extraction process was governed by the complexation enthalpy with the phase transfer enthalpy playing only a minor role. Efforts were devoted to investigate the structural features of the Ln(TTA)4− complex with the support of molecular dynamics simulations.