Recent Functionalized Strategies of Metal‐Organic Frameworks for Anode Protection of Aqueous Zinc‐Ion Battery

阳极 材料科学 电偶阳极 钝化 成核 水溶液 金属有机骨架 纳米技术 电池(电) 化学工程 电解质 离子 电极 阴极保护 冶金 化学 有机化学 图层(电子) 功率(物理) 吸附 物理化学 工程类 物理 量子力学
作者
Chen Ming,Wei Fu,Chun‐Chao Hou,Yunhai Zhu,Fanlu Meng
出处
期刊:Small [Wiley]
卷期号:20 (44) 被引量:6
标识
DOI:10.1002/smll.202403724
摘要

The inherent benefits of aqueous Zn-ion batteries (ZIBs), such as environmental friendliness, affordability, and high theoretical capacity, render them promising candidates for energy storage systems. Nevertheless, the Zn anodes of ZIBs encounter severe challenges, including dendrite formation, hydrogen evolution reaction, corrosion, and surface passivation. These would result in the infeasibility of ZIBs in practical situations. To this end, artificial interfaces with functionalized materials are crafted to protect the Zn anode. They have the capability to modulate the zinc ion flux in proximity to the electrode surface and shield it from aqueous electrolytes by leveraging either size effects or charge effects. Considering metal-organic frameworks (MOFs) with tunable pore size, chemical composition, and stable framework structures, they have emerged as effective materials for building artificial interfaces, prolonging the lifespan, and improving the unitization of Zn anode. In this review, the contributions of MOFs for protecting Zn anode, which mainly involves facilitating homogeneous nucleation, manipulating selective deposition, regulating ion and charge flux, accelerating Zn desolvation, and shielding against free water and anions are comprehensively summarized. Importantly, the future research trajectories of MOFs for the protection of the Zn anode are underscored, which may propose new perspectives on the practical Zn anode and endow the MOFs with high-value applications.
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