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Design Strategies for High‐Energy‐Density Aqueous Zinc Batteries

📅 February 1, 2022 👤 Pengchao Ruan, Shuquan Liang, Bingan Lu et al. 📖 Angewandte Chemie International Edition 📊 754 citations

🤖 Plain-English Summary

Abstract In recent years, the increasing demand for high‐capacity and safe energy storage has focused attention on zinc batteries featuring high voltage, high capacity, or both. In this Review, we comprehensively summarize the rational design strategies of high‐energy‐density zinc batteries and critically analyze the positive effects and potential issues of these strategies in optimizing the electrochemistry, cathode materials, electrolytes, and device architecture.

🔑 Key Findings

  • Despite extensive research progress, achieving high‐energy‐density zinc batteries remains challenging and requires the synergistic regulation of multiple factors including reaction mechanisms, electrodes, and electrolytes.
  • In this Review, we comprehensively summarize the rational design strategies of high‐energy‐density zinc batteries and critically analyze the positive effects and potential issues of these strategies in optimizing the electrochemistry, cathode materials, electrolytes, and device architecture.
  • Finally, the challenges and perspectives for the further development of high‐energy‐density zinc batteries are outlined to guide research towards new‐generation batteries for household appliances, low‐speed electric vehicles, and large‐scale energy storage systems.

💡 Why This Matters

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📋 Article Details

Category ⚛️ Physics & Space Science
Published Feb 01, 2022
Journal Angewandte Chemie International Edition
Authors Pengchao Ruan, Shuquan Liang, Bingan Lu, Hong Jin Fan, Jiang Zhou
DOI 10.1002/anie.202200598
Citations 754
Source OpenAlex

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