Yang Yi, Chen Tao, Zhu Mingke, Gao Gang, Wang Yinming, Nie Qianqian, Jiang Yunpeng, Xiong Ting, Lee Wee Siang Vincent, Xue Junmin
Department of Materials Science and Engineering, National University of Singapore, Singapore 117575, Singapore.
School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, 200 Xiaolingwei Street, Nanjing 210094, China.
ACS Appl Mater Interfaces. 2022 Aug 24;14(33):37759-37770. doi: 10.1021/acsami.2c09144. Epub 2022 Aug 15.
Zn dendrite growth during repeated plating and stripping of a Zn metal anode often causes short-circuiting by puncturing the separator. Herein, we propose a separator modification strategy to regulate the Zn-ion flux and achieve uniform Zn deposition through the OH-terminated SiO nanosphere coating. The interspaces between the uniform SiO nanospheres construct a network of Zn-ion transport channels, and the negatively charged hydroxyl groups on the surface of SiO nanospheres can electrostatically attract the Zn ions to direct the ion migration. The negative charges on SiO nanospheres are retained at a higher pH, which enables the SiO coating to consistently regulate the Zn-ion flux in the operating pH range of the Zn stripping/plating process. With a uniform Zn deposition guided by the SiO coating, the dendrite formation is suppressed and the side reactions are alleviated. As a result, the Zn||Zn symmetric cell achieves a cyclic life of 1000 h at both 3 and 5 mA cm. Meanwhile, the Zn||Cu asymmetric cell is able to maintain a Coulombic efficiency of 99.62% at 1 mA cm for 2000 cycles, which outperforms many previously reported strategies.
在锌金属阳极的反复电镀和剥离过程中,锌枝晶生长常常会刺穿隔膜导致短路。在此,我们提出一种隔膜改性策略,通过羟基封端的二氧化硅纳米球涂层来调节锌离子通量并实现均匀的锌沉积。均匀的二氧化硅纳米球之间的间隙构建了锌离子传输通道网络,并且二氧化硅纳米球表面带负电荷的羟基可以静电吸引锌离子以引导离子迁移。二氧化硅纳米球上的负电荷在较高pH值下得以保留,这使得二氧化硅涂层能够在锌剥离/电镀过程的工作pH范围内持续调节锌离子通量。在二氧化硅涂层引导下实现均匀的锌沉积,枝晶形成受到抑制,副反应也得到缓解。结果,锌||锌对称电池在3和5 mA cm下均实现了1000小时的循环寿命。同时,锌||铜不对称电池在1 mA cm下能够保持99.62%的库仑效率达2000次循环,这优于许多先前报道的策略。