Highly active electrolytes based on a novel [Mg2(µ-Cl)2]2+ cation complex for reversible Mg deposition were developed and analyzed in this work. These electrolytes were formulated in dimethoxyethane through dehalodimerization of non-nucleophilic MgCl2 by reacting with either Mg salts (such as Mg(TFSI)2, TFSI= bis(trifluoromethane)sulfonylimide) or Lewis acid salts (such as AlEtCl2 or AlCl3). The cation complex was identified for the first time as [Mg2(µ-Cl)2(DME)4]2+ (DME=dimethoxyethane) and its molecular structure was characterized by single crystal X-ray diffraction, Raman spectroscopy and NMR. The electrolyte synthesis process was studied and rational approaches for formulating highly active electrolytes were proposed. Through control of the anions, electrolytes with efficiency close to 100%, wide electrochemical window (up to 3.5V) and high ionic conductivity (> 6 mS/cm) were obtained. The electrolyte synthesis and understandings developed in this work could bring significant opportunities for rational formulation of electrolytes with the general formula [Mg2(µ-Cl)2(DME)4][anion]x for practical Mg batteries.
Revised: May 21, 2015 |
Published: April 16, 2015
Citation
Cheng Y., R.M. Stolley, K. Han, Y. Shao, B.W. Arey, N.M. Washton, and K.T. Mueller, et al. 2015.Highly Active Electrolytes for Rechargeable Mg Batteries Based on [Mg2(µ-Cl)2]2+ Cation Complex in Dimethoxyethane.Physical Chemistry Chemical Physics 17, no. 20:13307-13314.PNNL-SA-106553.doi:10.1039/C5CP00859J