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用于高性能可充电镁电池的坚固非亲核电解质的简便经济合成方法。

Facile and Economic Synthesis of Robust Non-Nucleophilic Electrolyte for High-Performance Rechargeable Magnesium Batteries.

作者信息

Huang Xueting, Wen Jiaxin, Lei Jinglei, Huang Guangsheng, Pan Fusheng, Li Lingjie

机构信息

School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, P. R. China.

National Engineering Research Center for Magnesium Alloys, Chongqing University, Chongqing 400044, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Feb 23;14(7):8906-8915. doi: 10.1021/acsami.1c19971. Epub 2022 Feb 8.

Abstract

A cost-effective and highly efficient electrolyte with a wide electrochemical window, high reversibility of Mg plating/stripping, non-/low-corrosivity, good compatibility with cathode materials, and tolerance of trace water and impurity is crucial for the commercialization of rechargeable magnesium batteries. In this work, a novel boron-centered non-nucleophilic electrolyte that meets all the above requirements is prepared a facile and economic approach from the raw materials B(TFE)/MgCl/CrCl/Mg (BMCM). The as-prepared BMCM electrolyte is mainly composed of tetracoordinated anions [B(TFE)] and solvated cations [Mg(μ-Cl)(DME)]. The BMCM electrolyte demonstrates attractive electrochemical performance, with a low overpotential (∼139 mV), a high Coulombic efficiency (∼97%), a high anodic stability (∼3.5 V Mg/Mg), and a long-term (more than 500 h) cycling stability. Moreover, BMCM shows good compatibility with the CuS cathode material. The CuS|BMCM|Mg full cell delivers a discharge specific capacity of 231 mAh g (at 56 mA g), which can retain ∼88% even after 100 cycles. Importantly, the BMCM electrolyte is cost-effective and tolerant of trace impurity and water, which has great potential to be commercialized. This work is expected to promote the development of practical rechargeable magnesium batteries.

摘要

对于可充电镁电池的商业化而言,一种具有宽电化学窗口、镁电镀/剥离的高可逆性、无/低腐蚀性、与阴极材料良好的兼容性以及对痕量水和杂质耐受性的经济高效电解质至关重要。在这项工作中,通过一种简便且经济的方法,从原料B(TFE)/MgCl/CrCl/Mg(BMCM)制备了一种满足上述所有要求的新型硼中心非亲核电解质。所制备的BMCM电解质主要由四配位阴离子[B(TFE)]和溶剂化阳离子[Mg(μ-Cl)(DME)]组成。BMCM电解质表现出有吸引力的电化学性能,具有低过电位(约139 mV)、高库仑效率(约97%)、高阳极稳定性(约3.5 V vs Mg/Mg)以及长期(超过500小时)的循环稳定性。此外,BMCM与CuS阴极材料表现出良好的兼容性。CuS|BMCM|Mg全电池在56 mA g下的放电比容量为231 mAh g,即使在100次循环后仍可保留约88%。重要的是,BMCM电解质具有成本效益且对痕量杂质和水具有耐受性,具有很大的商业化潜力。这项工作有望促进实用型可充电镁电池的发展。

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