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Decoding Dual Redox-Active Ammonium Molybdenum Sulfide for High-Capacity Hydrated Ammonium-Ion Storage

  • Jinyao Yang
  • , Zeyu Cao
  • , Ying Yang
  • , Hang Ren
  • , Lifen Long
  • , Jing Li
  • , Langyuan Wu
  • , Huaiyu Shao
  • , Netanel Shpigel
  • , Shengyang Dong

نتاج البحث: نشر في مجلةمقالةمراجعة النظراء

ملخص

Aqueous nonmetallic ammonium-ion (NH4+) batteries (AmIBs) have emerged as one of the promising electrochemical energy storage candidates. However, their advancements have been hindered by the scarcity of high-performance host materials. Herein, a sulfur-rich ammonium molybdenum sulfide ((NH4)2Mo3S13·H2O, NMSH) is developed as an anode host for AmIBs. Theoretical and experimental results demonstrate that NMSH possesses a dual redox-active center (i.e., Mo4+and S22–) displaying a high reversible specific capacity of ∼275 mAh g–1at 0.1 A g–1, which outperforms the most reported ammonium-ion storage hosts. Even at 10 A g–1, this material shows a great rate capacity of 121 mAh g–1. Notably, the hydrated ammonium-ion storage mechanism with water co-intercalation/extraction is verified by various characterization technologies and theoretical simulation. The sulfur-rich NMSH facilitates ammonium-ion storage, thereby paving the way for exploring more energetic, efficient, and sustainable ammonium-ion batteries.

اللغة الأصليةالإنجليزيّة
الصفحات (من إلى)6356-6364
عدد الصفحات9
دوريةACS Energy Letters
مستوى الصوت10
المعرِّفات الرقمية للأشياء
حالة النشرنُشِر - 2025

بصمة

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