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Published on: September 29, 2020
Breaking Barriers Toward Practicality: Critical Materials and Strategies for High-Energy-Density Aqueous Zinc-Ion
Shaungxiu Cao1, Pufan Zhang2, Xianyu Liu3
1College of Materials Science and Engineering, Sichuan University, Chengdu, People's Republic of China.
Abstract:
Driven by the demands of grid-scale energy storage and the electrification of transport, achieving superior energy density is pivotal to establishing a more sustainable and economically resilient battery ecosystem. However, aqueous zinc-ion batteries (ZIBs), despite their cost-effectiveness, inherent safety, high theoretical capacity (820 mAh g-1), and favorable redox potential (-0.762 V vs. SHE), still suffer from insufficient energy densities that fall short of commercial requirements. In this review, the obstacles hindering energy density and fundamental pathways toward high-energy-density ZIBs are systematically elucidated. Subsequently, recent advancements in optimization strategies are critically analyzed, encompassing electrode engineering, electrolyte optimization, and separator modification. Finally, a forward-looking perspective is provided on the design principles and potential research directions for developing high-energy-density ZIBs.
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