材料科学
锌
阳极
电偶阳极
水溶液
纳米金刚石
金属
无机化学
冶金
阴极保护
有机化学
电极
化学
物理化学
钻石
作者
Meiling Wang,Jin Zhang,Mengqi Wu,Di Yang,Peiyan Sun,Jie Sun,Zeyu Zhang,Xibang Chen,Junjie Ba,Yizhan Wang,Jingyi Qiu,Yingjin Wei
标识
DOI:10.1002/adfm.202315757
摘要
Abstract The practical application of aqueous zinc ion batteries is greatly hindered by the severe dendrite growth and side reactions on the Zn metal anode. To address these challenges, nanodiamond (ND) particles are implanted on the Zn foil surface by a straightforward mechanical rolling process, which serves as heterogeneous seeds, enhancing the cycling stability of Zn metal anode. ND particles with carboxyl groups facilitate the even distribution of electric fields and Zn 2+ ions in their vicinity, which promotes the homogeneous deposition of Zn. Moreover, the excellent corrosion resistance of ND particles alleviates the side reactions of the electrode, thus effectively protecting the Zn metal anode in aqueous electrolyte. Benefited from these advantages, the ND@Zn anode shows over 4100 h reversible cycles in symmetric cells, and 99.7% Coulombic efficiency in asymmetric cells. The ND@Zn||MnO 2 full cell achieves a stable life of 1000 cycles with 87.0% capacity retention at 1 A g −1 current density. This cost‐effective fabrication process holds the potential for scalability, making it amenable to large‐scale production of zinc metal anodes.
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