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基于三氟甲磺酸四丁铵添加剂的无氯电解质用于延长镁电池的阳极稳定性

Chloride-Free Electrolyte Based on Tetrabutylammonium Triflate Additive for Extended Anodic Stability in Magnesium Batteries.

作者信息

Chinnadurai Deviprasath, Li Yuanjian, Zhang Chang, Yang Gaoliang, Lieu Wei Ying, Kumar Sonal, Xing Zhenxiang, Liu Wei, Seh Zhi Wei

机构信息

Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore 138634, Republic of Singapore.

School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, People's Republic of China.

出版信息

Nano Lett. 2023 Dec 13;23(23):11233-11242. doi: 10.1021/acs.nanolett.3c03740. Epub 2023 Nov 22.

Abstract

Rechargeable magnesium batteries (RMBs) have been proposed as a promising alternative to currently commercialized lithium-ion batteries. However, Mg anode passivation in conventional electrolytes necessitates the use of highly corrosive Cl ions in the electrolyte. Herein for the first time, we design a chloride-free electrolyte for RMBs with magnesium bis(hexamethyldisilazide) (Mg(HMDS)) and magnesium triflate (Mg(OTf)) as the main salts and tetrabutylammonium triflate (TBAOTf) as an additive. The TBAOTf additive improved the dissolution of Mg salts, consequently enhancing the charge-carrying species in the electrolyte. COMSOL studies further revealed desirable Mg growth in our modulated electrolyte, substantiated by homogeneous electric flux distribution across the electrolyte-electrode interface. Post-mortem chemical composition analysis uncovered a MgF-rich solid electrolyte interphase (SEI) that facilitated exceptional Mg deposition/dissolution reversibility. Our study illustrates a highly promising strategy for synthesizing a corrosion-free and reversible Mg battery electrolyte with a widened anodic stability window of up to 4.43 V.

摘要

可充电镁电池(RMBs)已被提议作为目前商业化锂离子电池的一种有前景的替代品。然而,传统电解质中的镁阳极钝化需要在电解质中使用高腐蚀性的氯离子。在此,我们首次设计了一种用于可充电镁电池的无氯电解质,以双(六甲基二硅氮基)镁(Mg(HMDS))和三氟甲磺酸镁(Mg(OTf))作为主要盐类,并以三氟甲磺酸四丁铵(TBAOTf)作为添加剂。TBAOTf添加剂改善了镁盐的溶解性,从而增加了电解质中的载流物种。COMSOL研究进一步揭示了在我们调制的电解质中镁的理想生长情况,这通过电解质-电极界面上均匀的电通量分布得到证实。死后化学成分分析发现了富含MgF的固体电解质界面(SEI),它促进了优异的镁沉积/溶解可逆性。我们的研究展示了一种极具前景的策略,用于合成一种无腐蚀且可逆的镁电池电解质,其阳极稳定性窗口拓宽至高达4.43V。

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