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April 12, 2026AIChE Journal0 citations

Modulating ionic liquid coordination microenvironments for lithium extraction: ePC ‐ SAFT modeling and molecular insights

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ZBZ. BiPFPaul FigielXZXinhe Zhang

Key Points

  • The research aims to enhance lithium extraction efficiency from brines by optimizing ionic liquid coordination microenvironments.
  • Utilized ionic liquid-based extractants like [BM2IM][Tf2N] and tri-isobutyl phosphate (TIBP).
  • Employed the electrolyte perturbed-chain statistical associating fluid theory (ePC-SAFT) for predictions.
  • Conducted spectral analyses and quantum chemical calculations to reveal the extraction mechanism.
  • Achieved a lithium extraction efficiency of 92.16% in a single stage.
  • Obtained a Li+/Mg2+ separation selectivity of 519.12.
  • Identified a Li+-2TIBP-2[Tf2N] complex formation as part of the extraction mechanism.

Abstract

Abstract This study proposes a novel strategy for enhancing Li + extraction from brines by modulating coordination microenvironments of ionic liquid (IL)‐based extractants using electron‐donating groups. The extractant system of 1‐butyl‐2,3‐dimethylimidazolium bis(trifluoromethylsulfonyl)amine (BM 2 IMTf 2 N) and tri‐isobutyl phosphate (TIBP) achieved a high single‐stage Li + extraction efficiency of 92.16% and separation selectivity of Li + /Mg 2+ of 519.12. The electrolyte perturbed‐chain statistical associating fluid theory (ePC‐SAFT) was employed to qualitatively predicted activity coefficients of Li + and Mg 2+ in the so‐called “organic‐inorganic composite electrolyte system” studied. The molecular‐level Li + extraction mechanism (i.e., the form of Li + ‐2TIBP‐2Tf 2 N − complex) was revealed by spectral analyses and quantum chemical (QC) calculations. It is found that enhancing Li + extraction by modulating coordination microenvironments is derived from two reasons of weakening both the cation‐anion electrostatic interactions within the IL and cation‐TIBP association, thereby promoting the exchange between IL‐cation and Li + overall. This work aims to provide a theoretical guidance for designing advanced Li + extractants.

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Cite This Study

Bi et al. (2026) studied this question.

synapsesocial.com/papers/69db383b4fe01fead37c6733https://doi.org/10.1002/aic.70384
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