Silicon-based all-solid-state batteries operating free from external pressure.

Zhang, Zhiyong; Zhang, Xiuli; Liu, Yan; Lan, Chaofei; Han, Xiang; Pei, Shanpeng; Luo, Linshan; Su, Pengfei et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Silicon-based all-solid-state batteries offer high energy density and safety but face significant application challenges due to the requirement of high external pressure. In this study, a Li<sub>21</sub>Si<sub>5</sub>/Si-Li<sub>21</sub>Si<sub>5</sub> double-layered anode is developed for all-solid-state batteries operating free from external pressure. Under the cold-pressed sintering of Li<sub>21</sub>Si<sub>5</sub> alloys, the anode forms a top layer (Li<sub>21</sub>Si<sub>5</sub> layer) with mixed ionic/electronic conduction and a bottom layer (Si-Li<sub>21</sub>Si<sub>5</sub> layer) containing a three-dimensional continuous conductive network. The resultant uniform electric field at the anode|SSE interface eliminates the need for high external pressure and simultaneously enables a twofold enhancement of the lithium-ion flux at the anode interface. Such an efficient ionic/electronic transport system also facilitates the uniform release of cycling expansion stresses from the Si particles and stabilizes bulk-phase and interfacial structure of anode. Consequently, the Li<sub>21</sub>Si<sub>5</sub>/Si-Li<sub>21</sub>Si<sub>5</sub> anode exhibited a critical current density of 10 mA cm<sup>-2</sup> at 45 °C with a capacity of 10 mAh cm<sup>-2</sup>. And the Li<sub>21</sub>Si<sub>5</sub>/Si-Li<sub>21</sub>Si<sub>5</sub>|Li<sub>6</sub>PS<sub>5</sub>Cl|Li<sub>3</sub>InCl<sub>6</sub>|LCO cell achieve an high initial Coulombic efficiency of (97 ± 0.7)% with areal capacity of 2.8 mAh cm<sup>-2</sup> at 0.25 mA cm<sup>-2</sup>, as well as a low expansion rate of 14.5% after 1000 cycles at 2.5 mA cm<sup>-2</sup>.