Xu Zhibin, Zhang Zirui, Li Xilong, Dong Qi, Qian Yitai, Hou Zhiguo
School of Chemistry and Material Science, University of Science and Technology of China, Hefei 230026, China.
ACS Appl Mater Interfaces. 2023 Mar 29;15(12):15574-15584. doi: 10.1021/acsami.3c00747. Epub 2023 Mar 16.
Aqueous zinc metal batteries are limited in practical applications due to their short lifespans. Herein, a LaF-coated Zn anode (LF@Zn) is investigated to induce the uniform Zn deposition and successfully build a separator-free quasi-solid-state zinc metal battery. The LF@Zn enables smooth and dendrite-free Zn deposition, owing to the homogeneous Zn flux regulated by the LaF-based quasi-solid-state electrolyte. It can also suppress the corrosion side reactions by modulating the [Zn(HO)] solvation sheath. The polarization of plating and stripping is relatively modest due to the reduced diffuse energy of desolvated Zn in the quasi-solid-state electrolyte. In a separator-free symmetric cell, the LF@Zn anode shows a significantly prolonged lifespan of over 1300 h at 2 mA cm and a superior rate performance with only 156 mV at an ultrahigh current density of 50 mA cm. A LF@Zn//VO quasi-solid-state full cell exhibits outperforming rate capability and a long cyclic performance for up to 3000 cycles at 6.0 A g. A stable Zn anode is established in this work with a fluoride-based quasi-solid-state electrolyte, opening up a new avenue for protecting metal anodes.
水系锌金属电池因其短寿命而在实际应用中受到限制。在此,研究了一种LaF包覆的锌阳极(LF@Zn),以诱导锌均匀沉积,并成功构建了一种无隔膜的准固态锌金属电池。由于基于LaF的准固态电解质调节了均匀的锌通量,LF@Zn能够实现平滑且无枝晶的锌沉积。它还可以通过调节[Zn(HO)]溶剂化鞘来抑制腐蚀副反应。由于准固态电解质中去溶剂化锌的扩散能量降低,电镀和剥离的极化相对较小。在无隔膜对称电池中,LF@Zn阳极在2 mA cm时显示出超过1300小时的显著延长寿命,并且在50 mA cm的超高电流密度下具有仅156 mV的优异倍率性能。LF@Zn//VO准固态全电池在6.0 A g下表现出优异的倍率能力和长达3000次循环的长循环性能。在这项工作中,用基于氟化物的准固态电解质建立了稳定的锌阳极,为保护金属阳极开辟了一条新途径。