Geometrically-Screened, Sterically-Hindered Additive for Wide-Temperature Aqueous Zinc-Ion Batteries

  • Zhang, Sida
  • Huang, Shengyang
  • Chen, Weigen
  • Hu, Zuyang
  • Min, Dong Hyun
  • ... Kim, Byung-Hyun
  • 외 8명
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SCOPUS

10

초록

Aqueous zinc-ion batteries (AZIBs) are emerging as a highly promising alternative to lithium-ion batteries for next-generation energy storage, owing to their intrinsic safety, low cost, and environmental friendliness. In order to overcome these limitations, herein, a representative set of saccharide-based electrolyte additives is systematically screened, aiming to precisely tune the steric hindrance and molecular geometry by varying their glycosidic linkages. Cellobiose (CBS), with its unique β-1,4-glycosidic bond, is identified as a superior additive. Theoretical and spectroscopic analyses reveal that CBS manipulates the hydrogen-bond network, enhancing low-temperature performance. Its zincophilic nature promotes adsorption, forming a robust hybrid solid electrolyte interphase that orients deposition to the Zn (002) plane and mitigates parasitic side reactions. Consequently, symmetric cells with the CBS additive achieved an exceptional lifespan exceeding 4000 h and stable operation at a high depth of discharge (46.97%). Furthermore, Zn||NH4V4O10 pouch cell delivered 89.21% of capacity retention after 400 cycles with a high cathode mass loading (7.82 g cm−2) and a low N/P ratio (2.9). This work establishes a rational design strategy using a sustainable additive to develop high-performance, wide-temperature AZIBs.

키워드

electrolyte additivemolecular engineeringwide-temperature batteryzinc anode
제목
Geometrically-Screened, Sterically-Hindered Additive for Wide-Temperature Aqueous Zinc-Ion Batteries
저자
Zhang, SidaHuang, ShengyangChen, WeigenHu, ZuyangMin, Dong HyunKim, Jun SuFu, HaoYun, Young SooCho, Won-ChulKim, Byung-HyunLi, BaoyuLi, ChengchaoSun, JingyuPark, Ho Seok
DOI
10.1002/adfm.202523753
발행일
2025-10
유형
Article; Early Access
저널명
Advanced Materials for Optics and Electronics
36
19