Harizanova Sonya, Tushev Trajche, Koleva Violeta, Stoyanova Radostina
Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
Materials (Basel). 2023 Oct 4;16(19):6546. doi: 10.3390/ma16196546.
Sodium iron phosphate-pyrophosphate, NaFe(PO)PO (NFPP) emerges as an excellent cathode material for sodium-ion batteries. Because of lower electronic conductivity, its electrochemical performance depends drastically on the synthesis method. Herein, we provide a simple and unified method for synthesis of composites between NFPP and reduced graphene oxide (rGO) and standard carbon black, designed as electrode materials for both sodium- and lithium-ion batteries. The carbon additives affect only the morphology and textural properties of the composites. The performance of composites in sodium and lithium cells is evaluated at elevated temperatures. It is found that NFPP/rGO outperforms NFPP/C in both Na and Li storage due to its hybrid mechanism of energy storage. In sodium half-cells, NFPP/rGO delivers a reversible capacity of 95 mAh/g at 20 °C and 115 mAh/g at 40 °C with a cycling stability of 95% and 88% at a rate of C/2. In lithium half-cells, the capacity reaches a value of 120 mAh/g at 20 and 40 °C, but the cycling stability becomes worse, especially at 40 °C. The electrochemical performance is discussed on the basis of ex situ XRD and microscopic studies. The good Na storage performance of NFPP/rGO at an elevated temperature represents a first step towards its commercialization.
磷酸铁钠 - 焦磷酸盐,NaFe(PO)PO (NFPP) 成为钠离子电池的一种优异正极材料。由于其电子电导率较低,其电化学性能在很大程度上取决于合成方法。在此,我们提供了一种简单且统一的方法来合成NFPP与还原氧化石墨烯 (rGO) 和标准炭黑之间的复合材料,将其设计为钠离子和锂离子电池的电极材料。碳添加剂仅影响复合材料的形态和结构性质。在高温下评估了复合材料在钠电池和锂电池中的性能。发现由于其混合储能机制,NFPP/rGO在钠存储和锂存储方面均优于NFPP/C。在钠半电池中,NFPP/rGO在20°C时提供95 mAh/g的可逆容量,在40°C时为115 mAh/g,在C/2倍率下循环稳定性分别为95%和88%。在锂半电池中,在20°C和40°C时容量达到120 mAh/g,但循环稳定性变差,尤其是在40°C时。基于非原位XRD和微观研究对电化学性能进行了讨论。NFPP/rGO在高温下良好的钠存储性能是其商业化的第一步。