Biomass-Derived Anion-Anchoring Nano-CaCO<sub>3</sub> Coating for Regulating Ion Transport on Li Metal Surface.

Ju, Zhijin; Xie, Qifan; Sheng, Ouwei; Wu, Xiaoxue; Tan, Yihong; Hong, Min; Tao, Xinyong; Liang, Zheng · Nano Lett · 2022

basic_science · Level V

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Abstract

The free transport of anions in a Li metal battery can cause multiple issues, including a high anion transference number, space charge, and concentration polarization, eventually leading to uncontrolled dendrite formation and decreased performance. Herein, we report an anion-anchoring nano-CaCO<sub>3</sub> (NC) coating derived from eggshell biowaste for stabilizing Li metal anodes. As the adsorption of local TFSI<sup>-</sup> anions onto the NC adsorbent can undermine the anion concentration gradient and promote rapid Li-ion diffusion, it can effectively inhibit the proliferation of Li dendrites assisted by the NC coating. Consequently, Li/Cu cells with NC@Cu electrode can achieve a high Coulombic efficiency of ∼98.4% for more than 420 cycles and can even reach ∼99.1% at an ultrahigh areal capacity of 20 mAh cm<sup>-2</sup>. In particular, full cells with NC/Li@Cu electrodes show a stable lifespan of over 240 cycles with an average efficiency of ∼99.8% at a low N/P ratio of ∼3.3.

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