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在基于溴化物的非亲核电解质中对镁金属阳极进行剥离和电镀

Stripping and Plating a Magnesium Metal Anode in Bromide-Based Non-Nucleophilic Electrolytes.

作者信息

Dongmo Saustin, Zaubitzer Steve, Schüler Philipp, Krieck Sven, Jörissen Ludwig, Wohlfahrt-Mehrens Margret, Westerhausen Matthias, Marinaro Mario

机构信息

Zentrum für Sonnenenergie und Wasserstoff-Forschung Baden-Württemberg, Helmholtzstraße 8, 89081, Ulm, Germany.

Friedrich-Schiller University Jena, Institute of Inorganic and Analytical Chemistry, Humboldtstraße 8, 07743, Jena, Germany.

出版信息

ChemSusChem. 2020 Jul 7;13(13):3530-3538. doi: 10.1002/cssc.202000249. Epub 2020 May 19.

Abstract

A non-nucleophilic Hauser base hexamethyldisilazide (HMDS) magnesium electrolyte possesses inherent properties required for a magnesium-sulfur battery. However, the development of full cell batteries using HMDSCl-based electrolytes is still hampered by a low coulombic efficiency. A new electrolyte formulation of non-nucleophilic HMDS magnesium containing bromide as a halide instead of chloride was obtained through a simple and straightforward synthesis route. The electrochemistry of magnesium was investigated through plating and stripping in three different HMDSBr-based electrolytes: Mg(HMDS)Br, Mg(HMDS)Br-BEt , and Mg(HMDS)Br-AlEt dissolved in tetrahydrofuran. The different magnesium species present in the electrolytes were determined using NMR. Weak electron-withdrawing Lewis acids, BEt and AlEt were used intentionally and their impact was investigated. Contrary to expectation, the substitution of chloride by bromide does not drastically narrow the electrochemical stability window. HMDSBr-based electrolytes demonstrated long-term (1000 cycles) stable reversibility and highly efficient (≈99 %) magnesium plating/tripping without a high ratio of bromide compared with the MgHMDSCl-based electrolytes. The aprotic electrolyte shows comparatively high anodic stability (≈2.4 V vs. Mg/Mg ) and high ionic conductivity of 1.16 mS cm at room temperature. Plating of magnesium with low overpotential (<188 mV) revealed a morphology dependence on the electrolyte type with a shiny metallic homogenous layer, suggesting a rational balance between the nucleation and growth process in HMDSBr-based electrolytes.

摘要

一种非亲核性的豪泽碱六甲基二硅氮烷(HMDS)镁电解质具备镁硫电池所需的固有特性。然而,使用基于HMDSCl的电解质开发全电池仍受到低库仑效率的阻碍。通过一条简单直接的合成路线,获得了一种新的含溴而非氯的非亲核性HMDS镁电解质配方。通过在三种不同的基于HMDSBr的电解质(溶解于四氢呋喃中的Mg(HMDS)Br、Mg(HMDS)Br-BEt₃和Mg(HMDS)Br-AlEt₃)中进行电镀和脱镀,研究了镁的电化学性质。使用核磁共振确定了电解质中存在的不同镁物种。有意使用了弱吸电子路易斯酸BEt₃和AlEt₃,并研究了它们的影响。与预期相反,用溴取代氯并没有大幅缩小电化学稳定窗口。与基于MgHMDSCl的电解质相比,基于HMDSBr的电解质表现出长期(1000次循环)稳定的可逆性和高效(约99%)的镁电镀/脱镀,且无需高比例的溴化物。这种非质子电解质在室温下显示出相对较高的阳极稳定性(相对于Mg/Mg²⁺约为2.4 V)和1.16 mS cm⁻¹的高离子电导率。低过电位(<188 mV)下的镁电镀显示出镀层形态对电解质类型的依赖性,形成了光亮的金属均匀层,这表明在基于HMDSBr的电解质中,成核和生长过程之间达到了合理的平衡。

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