Electroactive quinone overlayer enables improved calendar-aging tolerance in zinc metal batteries

  • Heo, Cheol; 
  • Lee, Ji Eun; 
  • Kang, Hyunseo; 
  • Son, Ahyeon; 
  • Passerini, Stefano; 
  • 외 4명
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초록

Aqueous zinc (Zn) metal batteries offer high volumetric capacity, low cost, and enhanced safety, but their calendar life is severely limited by unstable Zn-electrolyte interfaces, dendritic growth, and the progressive accumulation of electrically isolated dead Zn. Here, we report a thin, conformal, and electroactive anthraquinone (AQ) overlayer that couples redox activity with interfacial stabilization. By reducing lattice mismatch via Zninserted AQ intermediates (Zn-AQ), the overlayer directs preferential Zn(002) deposition, thereby minimizing dendritic formation and promoting uniform plating. Redox-active AQ species rejuvenate electrically isolated dead Zn through a spontaneous solid-state redox process, mitigating aging-induced Zn loss, a function not attainable with conventional interfacial strategies. In addition, the AQ overlayer promotes an inorganic-rich solid-electrolyte interphase that suppresses corrosion and hydrogen evolution. As a result, Zn full cells incorporating the AQ overlayer retain 94.2% of their initial capacity after 1000 cycles at 2 A g- 1 and maintain 79.6% Coulombic efficiency after 7 days of calendar aging. Notably, Zn-free full cells (i.e., with a Zn-free anode) deliver 88.9% capacity retention after 100 cycles, in sharp contrast to only 20.6% for pristine Cu-based cell. These results establish electroactive organic overlayers as a promising route toward practical, improved calendar-aging stability of Zn metal batteries.

키워드

Aqueous zinc battery; Zinc metal anode; Calendar life; Electroactive quinone overlayer
제목
Electroactive quinone overlayer enables improved calendar-aging tolerance in zinc metal batteries
저자
Heo, Cheol; Lee, Ji Eun; Kang, Hyunseo; Son, Ahyeon; Passerini, Stefano; Choi, Jae Hoon; Kwak, Sang Kyu; Kim, Seung-Hyeok; Lee, Sang-Young
DOI
10.1016/j.cej.2026.181179
발행일
2026-11-01
유형
Article
저널명
Chemical Engineering Journal
권
547