Luo Zhenya, Chen Duanwei, Wang Xiao, Huang Jianyu, Pan Yong, Lei Weixin, Pan Junan
School of Materials Science and Engineering, Xiangtan University, Xiangtan, Hunan, 411105, China.
National-Provincial Laboratory of Special Function Thin Film Materials, Xiangtan University, Xiangtan, Hunan, 411105, China.
Small. 2021 May;17(20):e2008163. doi: 10.1002/smll.202008163. Epub 2021 Apr 10.
Sodium and potassium are considered to be the most promising anode candidates due to their easy availability, low-cost and similar chemical properties to lithium. Here, novel 3D accordion-like fluorinated graphite nanosheets (FGNSs) are reported as cathodes for sodium primary batteries (SPBs) and potassium primary batteries (PPBs). The FGNSs-x cathode exhibits unprecedented power and energy density due to the impressive 3D structure, high F/C ratio (1.0), and more surface CC bonds (7.14%). The FGNSs-1.0 exhibits very high specific capacities of 831.3 and 834.1 mAh g for SPBs and PPBs, respectively, close to the theoretical capacity. Besides, the maximum energy density of FGNSs-1.0 in SPBs and PPBs are 1960.5 and 2144.6 Wh kg , respectively. The maximum power density for Na/CFx and K/CFx batteries could reach up to 7076.8 and 6227.4 W kg , respectively. The electrochemical performance of FGNSs-1.0 at extreme temperatures (-30 to 100 °C), long storage time (60 days), high mass loading (3.6 mg cm ), and pouch-type cell is also evaluated for the first time. Surprisingly, FGNSs-1.0 has outstanding performance in these projects. Therefore, the new-type Na/CF and K/CF primary battery systems developed here have broad application prospects in high-energy applications that require high-power, low-cost, and normal use under extreme conditions.
由于钠和钾易于获取、成本低且化学性质与锂相似,它们被认为是最有前景的负极候选材料。在此,报道了新型三维手风琴状氟化石墨纳米片(FGNSs)作为钠原电池(SPBs)和钾原电池(PPBs)的正极。FGNSs-x正极由于其令人印象深刻的三维结构、高F/C比(1.0)和更多的表面CC键(7.14%),展现出前所未有的功率和能量密度。FGNSs-1.0在SPBs和PPBs中分别表现出非常高的比容量,为831.3和834.1 mAh g,接近理论容量。此外,FGNSs-1.0在SPBs和PPBs中的最大能量密度分别为1960.5和2144.6 Wh kg。Na/CFx和K/CFx电池的最大功率密度分别可达7076.8和6227.4 W kg。首次评估了FGNSs-1.0在极端温度(-30至100°C)、长储存时间(60天)、高质量负载(3.6 mg cm)和软包电池中的电化学性能。令人惊讶的是,FGNSs-1.0在这些项目中表现出色。因此,这里开发的新型Na/CF和K/CF原电池系统在需要高功率、低成本以及在极端条件下正常使用的高能量应用中具有广阔的应用前景。