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Trace Amounts of Triple-Functional Additives Enable Reversible Aqueous Zinc-Ion Batteries from a Comprehensive Perspective 被引量:3
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作者 ruwei chen Wei Zhang +12 位作者 Quanbo Huang Chaohong Guan Wei Zong Yuhang Dai Zijuan Du Zhenyu Zhang Jianwei Li Fei Guo Xuan Gao Haobo Dong Jiexin Zhu Xiaohui Wang Guanjie He 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第6期143-154,共12页
Although their cost-effectiveness and intrinsic safety,aqueous zinc-ion batteries suffer from notorious side reactions including hydrogen evolution reaction,Zn corrosion and passivation,and Zn dendrite formation on th... Although their cost-effectiveness and intrinsic safety,aqueous zinc-ion batteries suffer from notorious side reactions including hydrogen evolution reaction,Zn corrosion and passivation,and Zn dendrite formation on the anode.Despite numerous strategies to alleviate these side reactions have been demonstrated,they can only provide limited performance improvement from a single aspect.Herein,a triple-functional additive with trace amounts,ammonium hydroxide,was demonstrated to comprehensively protect zinc anodes.The results show that the shift of electrolyte pH from 4.1 to 5.2 lowers the HER potential and encourages the in situ formation of a uniform ZHS-based solid electrolyte interphase on Zn anodes.Moreover,cationic NH^(4+)can preferentially adsorb on the Zn anode surface to shield the“tip effect”and homogenize the electric field.Benefitting from this comprehensive protection,dendrite-free Zn deposition and highly reversible Zn plating/stripping behaviors were realized.Besides,improved electrochemical performances can also be achieved in Zn//MnO_(2)full cells by taking the advantages of this triple-functional additive.This work provides a new strategy for stabilizing Zn anodes from a comprehensive perspective. 展开更多
关键词 Aqueous zinc-ion battery Cationic shielding effect Solid electrolyte interphase pH value Triple-functional additive
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锌在正极材料上的欠电位沉积:水系锌离子电池中的一种可避免的衰减机理 被引量:1
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作者 朱少华 戴宇航 +11 位作者 李景昊 叶楚梅 周万海 余若瀚 廖小彬 李坚涛 张伟 宗伟 陈儒维 何冠杰 晁栋梁 安琴友 《Science Bulletin》 SCIE EI CAS CSCD 2022年第18期1882-1889,M0004,共9页
水系锌离子电池由于其低成本、高安全、高容量等特点,在大规模储能方面极具应用前景.然而其实际应用严重受限于其较差的循环寿命.本文揭示了正极材料上的锌金属的欠电位沉积现象,该反应具有高度的不可逆性,导致水系锌离子电池性能衰减.... 水系锌离子电池由于其低成本、高安全、高容量等特点,在大规模储能方面极具应用前景.然而其实际应用严重受限于其较差的循环寿命.本文揭示了正极材料上的锌金属的欠电位沉积现象,该反应具有高度的不可逆性,导致水系锌离子电池性能衰减.结合实验和理论模拟方法,揭示出该欠电位沉积过程符合二维成核和生长模型,在热力学上是一种可行的机制.此外,发现该现象广泛存在于VO_(2)//Zn、TiO_(2)//Zn和SnO_(2)//Zn等体系中.通过控制电池的电压区间下限,显著地消除了正极上的锌欠电位沉积,缓解了电池的退化.本工作为水系锌离子电池的性能衰减提供了新的见解,并启发电池研究者关注电池体系中的金属欠电位沉积现象. 展开更多
关键词 锌离子电池 正极材料 循环寿命 不可逆性 欠电位沉积 性能衰减 衰减机理 生长模型
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