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December 5, 2025Science Advances4 citationsOpen Access

Ultraselective sequestration of Li + and Mg 2+ from brines via a reusable polyoxoniobate-based ion sponge

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JLJialu LiESErika SamoľováADAndrew Dopilka

Key Points

  • Achieving over 99.9% Mg 2+ removal with negligible Li + loss in under 1 min shows the efficiency of the method.
  • With selectivity values exceeding 5000, this technique allows for ultraselective separation of lithium from magnesium in brines.
  • The polyoxoniobate-based sponge maintains over 99% magnesium rejection across regeneration cycles, highlighting its recyclability.
  • The method supports sustainable lithium and magnesium sourcing, which is essential for clean energy technologies.

Abstract

Lithium (Li) and magnesium (Mg) are designated as critical mineral materials (CMM) due to their essential roles in clean energy technologies. However, extracting high-purity Li + from brine remains a formidable challenge owing to the presence of Mg 2+ , a physicochemical similar ion that often exists in excess. Here, we introduce a polyoxoniobate-based “Mg-PONb sponge” that enables ultraselective and rapid Li + /Mg 2+ separation across an exceptionally broad range of Mg/Li ratios (0.02 to 200.63). This framework achieves >99.9% Mg 2+ removal with negligible Li + loss in under 1 min, yielding Li + /Mg 2+ selectivity values exceeding 5000. The sponge demonstrates excellent recyclability, maintaining >99% Mg 2+ rejection and Li + permeability across five regeneration cycles without structural degradation. Mechanistic investigations reveal that selective Mg 2+ capture originates from strong coordination with terminal oxygens on the PONb cluster, driving rapid formation of porous Mg-PONb frameworks. This work presents a generalizable, scalable strategy for Li + /Mg 2+ separation and offers a sustainable path toward enhanced Li and Mg recovery from complex brine sources.

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Cite This Study

Li et al. (2025) studied this question.

synapsesocial.com/papers/694022612d562116f28fc927https://doi.org/10.1126/sciadv.adz7696
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