Chen Xiaomin, Zhou Xunzhu, Yang Zhuo, Hao Zhiqiang, Chen Jian, Kuang Wenxi, Shi Xiaoyan, Wu Xingqiao, Li Lin, Chou Shu-Lei
Institute for Carbon Neutralization, College of Chemistry and Materials Engineering, Wenzhou University Wenzhou Zhejiang 325035 China
Wenzhou Key Laboratory of Sodium-Ion Batteries, Wenzhou University Technology Innovation Institute for Carbon Neutralization Wenzhou Zhejiang 325035 China.
Chem Sci. 2024 Jan 27;15(13):4833-4838. doi: 10.1039/d3sc06468a. eCollection 2024 Mar 27.
Sodium metal batteries have attracted increasing interest recently, but suffer from severe dendrite growth caused by uneven Na plating/stripping behavior, which may result in the piercing of the membrane, with short circuiting and even cause explosions. Herein, a conductive and sodiophilic Ag coating layer is introduced to regulate Na deposition behaviors for highly reversible sodium metal batteries. Ag coated Zn foil with enhanced sodiophilicity, rapid Na transfer kinetics and superior electronic conductivity guarantee the homogenized Na ion and electric field distribution. This enables remarkably low overpotentials and uniform Na plating/stripping behavior with ultrahigh Coulombic efficiency of 99.9% during 500 cycles. As expected, the enhanced electrochemical performance of the anode-less battery and anode-free battery coupled with Prussian blue is achieved with the help of Ag coating. This work emphasizes the role of the conductive and sodiophilic coating layer in regulating the Na deposition behaviors for highly reversible sodium metal batteries.
钠金属电池近来引起了越来越多的关注,但由于钠电镀/脱镀行为不均导致严重的枝晶生长,这可能会导致隔膜穿孔、短路甚至引发爆炸。在此,引入了一种导电且亲钠的银涂层,以调节钠的沉积行为,用于高可逆性钠金属电池。具有增强亲钠性、快速钠转移动力学和优异电子导电性的镀银锌箔可确保均匀的钠离子和电场分布。这使得过电位极低,并且在500次循环中具有99.9%的超高库仑效率,实现均匀的钠电镀/脱镀行为。正如预期的那样,在银涂层的帮助下,与普鲁士蓝耦合的无阳极电池和无负极电池的电化学性能得到了增强。这项工作强调了导电且亲钠的涂层在调节钠沉积行为以实现高可逆性钠金属电池方面的作用。