阳极
插层(化学)
材料科学
双金属片
电化学
电子顺磁共振
钠
硫黄
透射电子显微镜
化学工程
电极
无机化学
金属
化学
纳米技术
冶金
物理化学
核磁共振
工程类
物理
作者
Yu Wang,Haoke Zhang,Zi Wen,Chang Sun,Guoyong Wang,Ming‐Sheng Wang,Chun Cheng Yang,Qing Jiang
摘要
Abstract Conventional monometallic sulfides are usually conversion or conversion‐alloying‐dominated anodes, while the sluggish kinetics and severe volume variation greatly hamper their electrochemical properties in sodium‐ion batteries. Herein, bimetallic sulfides (V s ‐ZnIn 2 S 4 ) are developed with S vacancies, which are verified via electron paramagnetic resonance. A possible reaction mechanism (intercalation–conversion–alloying) is proposed, which is characterized by in situ X‐ray diffraction. In addition, the small volume change during (de)sodiation of V s ‐ZnIn 2 S 4 is also observed by in situ transmission electron microscopy. The V s ‐ZnIn 2 S 4 anode shows ultrastable and superfast sodium storage performance, such as outstanding long‐term cycling durability at 10 A g −1 (349.6 mAh g −1 after 2000 cycles) and rate property at 80 A g −1 (222.7 mAh g −1 ). Moreover, the full cell [V s ‐ZnIn 2 S 4 //Na 3 V 2 (PO 4 ) 3 /C] achieves an excellent property after 300 cycles (185.9 mAh g −1 ) at 5 A g −1 , showing significant potential for real‐world applications.
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