材料科学
法拉第效率
复合数
动力学
阳极
聚苯胺
金属
枝晶(数学)
化学工程
电化学
腐蚀
电化学动力学
复合材料
电极
聚合物
冶金
物理化学
数学
几何学
聚合
工程类
量子力学
物理
化学
作者
W.N. Kim,Ji Woong Choi,Hyuk Jun Lee,Min-Sang Kim,Sang Won Jung,Jin Gu Kang,Dong‐Wan Kim
标识
DOI:10.1002/aenm.202501610
摘要
Abstract Achieving high interfacial kinetics for Zn metal anodes, without triggering the hydrogen evolution reaction (HER) and corrosion, remains a challenge. Particularly, studies on promoting kinetics in an H 2 O‐poor electrical double layer (EDL) are extremely rare. This study introduces a macromolecular hydrogel interfacial layer, comprising alginate (Alg), poly(2‐acrylamido‐2‐methyl‐1‐propanesulfonic acid) (PAMPS), and polyaniline (PANI) (APP), to address this issue by engineering the EDL on Zn. The APP layer facilitates Faradaic processes such as de‐solvation and surface diffusion through PANI, while suppressing the HER and corrosion through an H 2 O‐poor and SO 4 2− ‐poor EDL. The uniform distribution of the electric field and ion flux, along with the high mechanical stability offered by APP, effectively mitigates Zn dendrite growth. Consequently, APP‐Zn electrodes demonstrate excellent electrochemical performance, including a high Coulombic efficiency (≈99.6%) over 700 cycles at 10 mA cm −2 in asymmetric cells and a high cumulative capacity of 1.8 Ah cm −2 in symmetric cells.
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