In situ real-time gravimetric and viscoelastic probing of surface films formation on lithium batteries electrodes.

Dargel, Vadim; Shpigel, Netanel; Sigalov, Sergey; Nayak, Prasant; Levi, Mikhael D; Daikhin, Leonid; Aurbach, Doron · Nat Commun · 2017

basic_science · Level V

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Abstract

It is generally accepted that solid-electrolyte interphase formed on the surface of lithium-battery electrodes play a key role in controlling their cycling performance. Although a large variety of surface-sensitive spectroscopies and microscopies were used for their characterization, the focus was on surface species nature rather than on the mechanical properties of the surface films. Here we report a highly sensitive method of gravimetric and viscoelastic probing of the formation of surface films on composite Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> electrode coupled with lithium ions intercalation into this electrode. Electrochemical quartz-crystal microbalance with dissipation monitoring measurements were performed with LiTFSI, LiPF<sub>6</sub>, and LiPF<sub>6</sub> + 2% vinylene carbonate solutions from which structural parameters of the surface films were returned by fitting to a multilayer viscoelastic model. Only a few fast cycles are required to qualify surface films on Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> anode improving in the sequence LiPF<sub>6</sub> < LiPF<sub>6</sub> + 2% vinylene carbonate << LiTFSI.