Dual-functional CF3SO3/amine additives synergistically construct an MgF2/Mg3N2-rich interphase toward high-performance magnesium–sulfur batteries

Abstract

Exploring promising non-nucleophilic electrolyte systems that enable reversible and efficient Mg plating/stripping while maintaining excellent stability represents a critical advancement for practical magnesium–sulfur (Mg/S) batteries. Herein, we designed an innovative mononuclear non-nucleophilic electrolyte by strategically incorporating trifluorosulfonate anions (OTf) and (S)-1-methoxy-2-propylamine (M4) additives into an Mg(AlCl4)2/PYR14TFSI/DME (designated as MAID) electrolyte. The resulting [Mg(M4)3(OTf)]+ coordination complex exhibited a reduced LUMO energy level that promoted the in situ formation of an MgF2/Mg3N2-rich solid-electrolyte interphase on an Mg anode. This tailored interphase not only facilitated Mg2+ transport kinetics but also established a stable interface that persistently suppressed parasitic reactions. Consequently, the MAID-NaOTf-M4 electrolyte exhibited exceptional Mg plating/stripping reversibility with minimal polarization below 200 mV for over 1600 h of cycling at 0.1 mA cm−2, high anodic stability up to 3.4 V vs. Mg/Mg2+, superior rate capability, high ionic conductivity of 8.45 mS cm−1 and a coulombic efficiency of 97.0% sustained over 1000 cycles. Notably, its non-nucleophilic nature ensured compatibility with sulfur-based cathodes, enabling the assembled Mg‖CMK-3@S0.86Se0.14 full cells to deliver outstanding rate performance and exceptional cycling stability, with capacities of 675.2 mAh g−1 retained after 200 cycles at 0.1C and 302.1 mAh g−1 after 400 cycles at 0.5C, along with ∼100% coulombic efficiency. This work provides valuable insights for the rational design of advanced electrolytes that concurrently optimize solvation structures and interfacial architecture to achieve high-performance Mg/S batteries.

Graphical abstract: Dual-functional CF3SO3−/amine additives synergistically construct an MgF2/Mg3N2-rich interphase toward high-performance magnesium–sulfur batteries

Supplementary files

Article information

Article type
Paper
Submitted
05 Feb 2026
Accepted
06 Apr 2026
First published
20 Apr 2026

J. Mater. Chem. A, 2026, Advance Article

Dual-functional CF3SO3/amine additives synergistically construct an MgF2/Mg3N2-rich interphase toward high-performance magnesium–sulfur batteries

J. Shi, M. Cheng, Q. Liu, R. Wang, W. Ma, J. Hu, T. Wei, B. Liu, M. Chen and W. Li, J. Mater. Chem. A, 2026, Advance Article , DOI: 10.1039/D6TA01097K

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