Zhang Zhe, Wang Xiaofang, Zhu Jiacheng, Li Nan, Wang Linlin, Yang Yusi, Chen Yifan, Tan Lulu, Niu Xiaogang, Wang Xuefeng, Ji Xiao, Zhu Yujie
School of Chemistry, Beihang University, 100191, Beijing, P.R. China.
School of Physics, Hubei University, 430062, Wuhan, Hubei, P.R. China.
Angew Chem Int Ed Engl. 2025 Jan 15;64(3):e202415491. doi: 10.1002/anie.202415491. Epub 2024 Nov 9.
Free from strategically important elements such as lithium, nickel, cobalt, and copper, potassium-ion batteries (PIBs) are heralded as promising low-cost and sustainable electrochemical energy storage systems that complement the existing lithium-ion batteries (LIBs). However, the reported electrochemical performance of PIBs is still suboptimal, especially under practically relevant battery manufacturing conditions. The primary challenge stems from the lack of electrolytes capable of concurrently supporting both the low-voltage anode and high-voltage cathode with satisfactory Coulombic efficiency (CE) and cycling stability. Herein, we report a promising electrolyte that facilitates the commercially mature graphite anode (>3 mAh cm) to achieve an initial CE of 91.14 % (with an average cycling CE around 99.94 %), fast redox kinetics, and negligible capacity fading for hundreds of cycles. Meanwhile, the electrolyte also demonstrates good compatibility with the 4.4 V (vs. K/K) high-voltage KMn[Fe(CN)] (KMF) cathode. Consequently, the KMF||graphite full-cell without precycling treatment of both electrodes can provide an average discharge voltage of 3.61 V with a specific energy of 316.5 Wh kg-(KMF+graphite), comparable to the LiFePO||graphite LIBs, and maintain 71.01 % capacity retention after 2000 cycles.
钾离子电池(PIBs)不含锂、镍、钴和铜等战略重要元素,被誉为有前景的低成本且可持续的电化学储能系统,可作为现有锂离子电池(LIBs)的补充。然而,报道的PIBs的电化学性能仍未达到最佳,尤其是在实际相关的电池制造条件下。主要挑战源于缺乏能够同时以令人满意的库仑效率(CE)和循环稳定性支持低压阳极和高压阴极的电解质。在此,我们报道了一种有前景的电解质,它能使商业上成熟的石墨阳极(>3 mAh cm)实现91.14%的初始CE(平均循环CE约为99.94%)、快速的氧化还原动力学以及数百次循环中可忽略不计的容量衰减。同时,该电解质还与4.4 V(相对于K/K)的高压KMn[Fe(CN)](KMF)阴极表现出良好的兼容性。因此,未经双电极预循环处理的KMF||石墨全电池可提供3.61 V的平均放电电压,比能量为316.5 Wh kg-(KMF + 石墨),与LiFePO||石墨LIBs相当,并在2000次循环后保持71.01%的容量保持率。