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author:

Yawei Xiao (Yawei Xiao.) [1] | Qianqian Gu (Qianqian Gu.) [2] | Haoyu Li (Haoyu Li.) [3] | Mengyao Li (Mengyao Li.) [4] | Yude Wang (Yude Wang.) [5]

Abstract:

Aqueous zinc-ion batteries are highly favored for grid-level energy storage owing to their low cost and high safety,but their practical application is limited by slow ion migration.To address this,a strategy has been developed to create a cation-accelerating electric field on the surface of the cathode to achieve ultrafast Zn2+diffusion kinetics.By employing electrodeposition to coat MoS2 on the surface of BaV6O16·3H2O nanowires,the directional built-in electric field generated at the heterointerface acts as a cation accelerator,continuously accelerating Zn2+diffusion into the active material.The optimized Zn2+diffusion coefficient in CC@BaV6O16-3H2O@MoS2(7.5 × 10-8 cm2 s-1)surpasses that of most reported V-based cathodes.Simultaneously,MoS2 serving as a cathodic armor extends the cycling life of the Zn-CC@BaV6O16·3H2O@MoS2 full batteries to over 10000 cycles.This work provides valuable insights into optimizing ion diffusion kinetics for high-performance energy storage devices.

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  • [ 1 ] [Haoyu Li]National Center for International Research on Photoelectric and Energy Materials,School of Materials and Energy,Yunnan University,Kunming 6500504,Yunnan,China
  • [ 2 ] [Yude Wang]National Center for International Research on Photoelectric and Energy Materials,School of Materials and Energy,Yunnan University,Kunming 6500504,Yunnan,China;Yunnan Key Laboratory of Carbon Neutrality and Green Low-carbon Technologies,Yunnan University,Kunming 6500504,Yunnan,China
  • [ 3 ] [Mengyao Li]National Center for International Research on Photoelectric and Energy Materials,School of Materials and Energy,Yunnan University,Kunming 6500504,Yunnan,China
  • [ 4 ] [Qianqian Gu]福州大学
  • [ 5 ] [Yawei Xiao]National Center for International Research on Photoelectric and Energy Materials,School of Materials and Energy,Yunnan University,Kunming 6500504,Yunnan,China;Key Laboratory of Ministry of Education for Advanced Materials in Tropical Island Resources,School of Chemistry and Chemical Engineering,Hainan University,Haikou 570228,Hainan,China

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能源化学

ISSN: 2095-4956

Year: 2025

Issue: 1

Volume: 100

Page: 377-384

1 4 . 0 0 0

JCR@2023

CAS Journal Grade:1

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ESI Highly Cited Papers on the List: 0 Unfold All

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30 Days PV: 0

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