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◆ Nature Communications2025-12-02· Materials science

An ammonia-induced universal synthesis approach for manganese based layered oxides

Yuxin Zhu, Zhen Guo, Jian Zeng, Jinfu Zhao, Hongguan Li, Guangying Gao, Shuanlong Di, Shulan Wang, Li Li

原始摘要(英文原文)· Original abstract
Manganese-rich layered transition-metal oxides are of great interests as positive electrodes for sodium-ion batteries considering their high specific capacity and operating voltage. However, it remains challenging to synthesize layered transition-metal oxides with high stability and rapid ion-migration kinetics. Herein, we develop a straightforward and universal synthesis approach for P2-type layered transition-metal oxides by simply updating the conventional solid-state reaction with only additional dicyandiamide introduced. We reveal the ammonia released successfully restrains the irreversible oxygen redox for stabilizing cationic migration and decreases the crystallization temperature for high-quality structure formation. The effectively suppressed Jahn-Teller distortion and facilitated Na+ transport kinetics therefore endow Na1/2MnO2 with overall performance enhancement, including a 6.7-fold improvement in rate capability and enhanced cycling stability. Similar performance enhancements are also found in other manganese-based layered transition-metal oxides, presenting great strategy universality. This work marks a key step forward in the synthesis-by-design of high-performance sodium-ion batteries electrode materials. Developing positive electrodes with high stability and rapid ion migration kinetics faces challenges for sodium ion batteries. Here, authors report a universal synthesis approach for layered transition-metal oxides by updating the conventional solid-state reaction with only dicyandiamide introduced.
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