Bimetallic Rechargeable Al/Zn Hybrid Aqueous Batteries Based on Al–Zn Alloys with Composite Electrolytes
Xiaohu Yang, Chen Zhang, Luning Chai, Wenming Zhang, Zhanyu Li
Hebei University
内容与影响
Aluminum is abundant and exhibits a high theoretical capacity and volumetric energy density. Additionally, the high safety of aqueous aluminum‐ion batteries makes them strong candidates for large‐scale energystorage systems. However, the frequent collapse of the cathode material and passive oxide film results in the difficult development of aqueous aluminum‐ion batteries. This work provides a novel battery system, namely, Al–Zn/Al(OTF) 3 +HOTF+Zn(OTF) 2 /Al x Zn y MnO 2 · n H 2 O, with a mixed electrolyte. The cathode applies MnO topology transformation to ensure that the cathode forms Al x MnO 2 · n H 2 O. Topology transformation alters the structure of the cathode material so that Zn 2+ can be intercalated into the Al x MnO 2 · n H 2 O spinel structure to provide support for the material structure. Regarding the anode, Zn 2+ in the electrolyte is deposited onto Al of the anode to produce a regional Al–Zn alloy. Zn 2+ is reduced to Zn metal during discharging, which adds a platform for secondary discharge beneficial for battery capacity enhancement. This system can provide a 1.6 V discharge platform, while the first cycle discharge can reach 554 mAh g ‐1 , thereby maintaining a high capacity of 313 mAh g ‐1 after 100 cycles. This study provides a new idea for the further development of aqueous aluminum‐ion batteries (AAIBs).
逐年被引趋势
关键指标
同类平均 = 1
同领域 · 同年份 · 同类型
Google Scholar 与 OpenAlex 的被引统计范围不同,数值存在差异属正常。
AI 辅助阅读
依据:摘要
回答优先基于摘要、文献信息与可获取全文;依据不足时会明确说明。
学术脉络
学科主题
工程Advanced battery technologies research
Advanced Battery Materials and Technologies · Thermal Expansion and Ionic Conductivity
参考文献 42
此处列出前 3 条
施引文献 65
按被引量排序,此处列出前 3 条