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◆ Advanced Materials2025-12-08· Materials science

In Situ Observation of Na <sub>2</sub> S Growth: A Step Toward High‐Energy and Safer Room Temperature Sodium Sulfur Batteries

Zhen Xiong, Si Chen, Jinqing Guo, Ningyan Cheng, Shilin Zhang, Binwei Zhang, Zidong Wei, Shi‐Gang Sun, Zaiping Guo

原始摘要(英文原文)· Original abstract
Abstract The Na 2 S cathode presents a promising metal‐free sodium configuration for high‐energy room‐temperature sodium sulfur (RT Na─S) batteries. However, the rational design of Na 2 S cathodes to overcome their poor electronic conductivity and sluggish conversion kinetics remains a major challenge. Here, an in situ carbothermic reduction strategy is reported to fabricate atomic Mo anchored on Na 2 S/C (including single Mo atom and Mo clusters) as cathode materials for RT Na─S batteries. In situ transmission electron microscopy and X‐ray diffraction technique reveal that atomic Mo could form a low‐temperature eutectic phase, which catalytically lowers the formation temperature of Na 2 S. This Mo‐Na 2 S/C exhibits remarkable cyclic stability, achieving an initial capacity of 1617 mAh g −1 at 0.1 A g −1 and a low activation voltage of 1.89 V. Notably, when paired with hard carbon, the safe sodium full cell delivers an impressive initial reversible capacity of 952 mAh g −1 . Experimental results and theoretical calculations reveal that the atomic Mo facilitates the interfacial electron transfer between Mo and Na 2 S, which modulates the bandgap of Na 2 S and reduces its reaction barriers to polysulfide, thereby enhancing the reaction kinetics. These findings offer an effective strategy for developing high‐performance Na 2 S cathodes and provide deeper insights into electrode preparation mechanisms.
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In Situ Observation of Na <sub>2</sub> S Growth: A Step Toward High‐Energy and Safer Room Temperature Sodium Sulfur Batteries — 科研速览 Science Skim