Hussain Salim, Sayem S M, Basurrah Assem, Rashed Tahany, Watanabe Fumiya, Siraj Noureen, Karabacak Tansel
School of Physical Sciences, University of Arkansas at Little Rock, Little Rock, AR 72204, USA.
Applied College, University of Jeddah, Jeddah 23890, Saudi Arabia.
Nanomaterials (Basel). 2025 Jun 19;15(12):952. doi: 10.3390/nano15120952.
Aqueous zinc ion batteries (AZIBs) have considerable potential for energy storage owing to their cost-effectiveness, safety, and environmental sustainability. However, dendrite formation, hydrogen evolution reaction (HER), and corrosion of the bare zinc (B-Zn) anode tremendously impact the performance degradation and premature failure of AZIBs. This study introduces a glancing angle deposition (GLAD) approach during the sputtering process to fabricate tellurium nanostructured (TeNS) at the zinc (Zn) anode to avoid the aforementioned issues with the B-Zn anode. Three different deposition times (5, 10, and 30 min) were used to prepare TeNS at the Zn anode. The morphology, crystallinity, composition, and wettability of the TeNSs were analyzed. The TeNSs served as hydrophilic sites and a protective layer, facilitating uniform Zn nucleation and plating while inhibiting dendrite formation and side reactions. Consequently, the symmetric cell with TeNS deposited on the Zn anode for 10 min (Te@Zn_10 min) demonstrated an enhanced cycling stability of 350 h, the lowest nucleation overpotential of 10.65 mV at a current density of 1 mA/cm, and an areal capacity of 0.5 mAh/cm. The observed enhancement in the cycling stability and reduction in the nucleation overpotential can be attributed to the optimal open area fraction of the TeNSs on the Zn surface, which promotes uniform Zn deposition while effectively suppressing side reactions.
水系锌离子电池(AZIBs)因其成本效益、安全性和环境可持续性而在能量存储方面具有巨大潜力。然而,枝晶形成、析氢反应(HER)以及裸锌(B-Zn)阳极的腐蚀极大地影响了AZIBs的性能退化和过早失效。本研究在溅射过程中引入掠角沉积(GLAD)方法,在锌(Zn)阳极上制备碲纳米结构(TeNS),以避免B-Zn阳极出现上述问题。使用三种不同的沉积时间(5、10和30分钟)在Zn阳极上制备TeNS。分析了TeNS的形貌、结晶度、成分和润湿性。TeNS作为亲水位点和保护层,促进了锌的均匀成核和电镀,同时抑制了枝晶形成和副反应。因此,在Zn阳极上沉积10分钟的TeNS(Te@Zn_10分钟)的对称电池表现出增强的循环稳定性,在1 mA/cm的电流密度下最低成核过电位为10.65 mV,面积容量为0.5 mAh/cm。观察到的循环稳定性增强和成核过电位降低可归因于Zn表面TeNS的最佳开放面积分数,其促进了锌的均匀沉积,同时有效抑制了副反应。