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Toward the Sustainable Lithium Metal Batteries with a New Electrolyte Solvation Chemistry

机译:朝着可持续锂金属电池,具有新的电解质溶剂化学化学

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Herein, a new solvation strategy enabled by Mg(NO3)(2) is introduced, which can be dissolved directly as Mg2+ and NO3- ions in the electrolyte to change the Li+ ion solvation structure and greatly increase interfacial stability in Li-metal batteries (LMBs). This is the first report of introducing Mg(NO3)(2) additives in an ester-based electrolyte composed of ternary salts and binary ester solvents to stabilize LMBs. In particular, it is found that NO3- efficiently forms a stable solid electrolyte interphase through an electrochemical reduction reaction, along with the other multiple anion components in the electrolyte. The interaction between Li+ and NO3- and coordination between Mg2+ and the solvent molecules greatly decreases the number of solvent molecules surrounding the Li+, which leads to facile Li+ desolvation during plating. In addition, Mg2+ ions are reduced to Mg via a spontaneous chemical reaction on the Li metal surface and subsequently form a lithiophilic Li-Mg alloy, suppressing lithium dendritic growth. The unique solvation chemistry of Mg(NO3)(2) enables long cycling stability and high efficiency of the Li-metal anode and ensures an unprecedented lifespan for a practical pouch-type LMB with high-voltage Ni-rich NCMA73 cathode even under constrained conditions.
机译:在此,引入由Mg(NO 3)(2)使能的新溶剂化策略,其可以直接溶解为电解质中的Mg 2 +和NO 3,以改变Li +离子溶剂化结构,并大大提高Li-Metal电池中的界面稳定性( LMBS)。这是在由三元盐和二元酯溶剂组成的基于酯类电解质中引入Mg(NO 3)(2)添加剂的第一报告,以稳定LMB。特别地,发现NO 3-有效地通过电化学还原反应与电解质中的其他多个阴离子组分一起形成稳定的固体电解质差异。 Mg2 +和溶剂分子之间的Li +和NO3和协调之间的相互作用大大降低了Li +周围的溶剂分子的数量,这导致镀层期间的锂+ DESolvation。此外,通过在Li金属表面上的自发化学反应将Mg2 +离子降低至Mg,随后形成锂硫酸锂锂合金,抑制锂树枝状生长。 Mg(NO3)(2)的独特溶剂化学化学能够实现Li-Meta阳极的长循环稳定性和高效率,并确保即使在约束条件下,具有高压Ni-NCMA73阴极的实用袋型LMB的前所未有的寿命。

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