Kim Soohyun, Heo Jiyun, Kim Riyul, Lee Ju-Hyuk, Seo Joowon, Yoon Sehyuk, Lee Hyomin, Kim Sung Jae, Kim Hee-Tak
Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology, 291, Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.
Department of Electrical and Computer Engineering, Seoul National University, Seoul, 08826, Republic of Korea.
Small. 2021 May;17(21):e2008059. doi: 10.1002/smll.202008059. Epub 2021 Apr 21.
Aqueous zinc (Zn) metal batteries (ZMBs) are considered a promising candidate for grid-scale energy storage due to their freedom from fire hazards. However, a limited reversibility of Zn metal electrode caused by dendritic Zn growth has hindered the advent of high-capacity Zn metal batteries (>4 mAh cm ). Herein, it is reported that fast electrokinetic Zn-ion transport extremely improves the Zn metal reversibility. It is revealed that a negatively charged porous layer (NPL) provides the electrokinetic Zn-ion transport by surface conduction, and consequently impedes the depletion of Zn-ion on electrode surface as indicated by numerical simulations and overlimiting current behavior. Due to the quick Zn-ion delivery, a dendrite-free and densely packed Zn metal deposit is accommodated inside its pores. With the introduction of the NPL, the cycling stability of Zn symmetric cell is enhanced by 21 times at 10 mA cm /10 mAh cm . Average Coulombic efficiency of 99.6% is achieved over 500 cycles for electrodeposition/stripping at 30 mA cm /5 mAh cm on NPL-Cu electrode. Furthermore, a high-capacity Zn/V O full cell with the NPL exhibits an extraordinary stability over 1000 cycles at a capacity of 4.8 mAh cm .
水系锌(Zn)金属电池(ZMBs)因其无火灾隐患而被认为是电网规模储能的一个有前景的候选者。然而,由树枝状锌生长导致的锌金属电极的有限可逆性阻碍了高容量锌金属电池(>4 mAh cm²)的出现。在此,据报道快速的电动锌离子传输极大地提高了锌金属的可逆性。研究表明,带负电的多孔层(NPL)通过表面传导提供电动锌离子传输,因此如数值模拟和过极限电流行为所示,可阻止电极表面锌离子的耗尽。由于锌离子的快速传输,其孔隙内形成了无枝晶且紧密堆积的锌金属沉积物。随着NPL的引入,锌对称电池在10 mA cm⁻²/10 mAh cm²时的循环稳定性提高了21倍。在NPL-Cu电极上,以30 mA cm⁻²/5 mAh cm²进行电沉积/剥离时,500次循环的平均库仑效率达到99.6%。此外,带有NPL的高容量Zn/V₂O₅全电池在4.8 mAh cm²的容量下,1000次循环表现出非凡的稳定性。