Vorfolomeeva Anna A, Zaguzina Alena A, Maksimovskiy Evgeny A, Gusel'nikov Artem V, Plyusnin Pavel E, Okotrub Alexander V, Bulusheva Lyubov G
Nikolaev Institute of Inorganic Chemistry SB RAS, 3 Acad. Lavrentiev Ave., 630090 Novosibirsk, Russia.
Nanomaterials (Basel). 2025 May 29;15(11):824. doi: 10.3390/nano15110824.
Lithium- and sodium-ion batteries (LIBs and SIBs) suffer from the significant degradation of electrochemical performance at low temperatures. This work presents promising hybrid anodes synthesized by the rapid thermolysis of ammonium tetrathiomolybdate and graphene oxide (GO) at 600 and 700 °C. Transmission electron microscopy revealed the formation of MoS crystallites oriented along or perpendicular to the surface of reduced GO (rGO) layers. X-ray photoelectron spectroscopy found the covalent C-S bonds connecting components in the MoS/rGO hybrids. The MoS/rGO_600 hybrid showed higher specific capacities in LIBs of 1370 mAh/g, 835 mAh/g, and 711 mAh/g at a current density of 0.1 A/g and temperatures of 25 °C, 0 °C, and -20 °C, respectively, due to the presence of excess sulfur in the sample. Increasing the current density to 2 A/g retained 78 and 34% of the capacity at 25 °C and -20 °C. In SIBs, the MoS/rGO_700 hybrid showed more promising results, achieving 550 mAh/g at 0.1 A/g and 400 mAh/g at 2 A/g, while lowering the temperature to -20 °C retained 48 and 17% of the capacity. Such good SIB performance is attributed to the enrichment of the sample with vertically oriented MoS layers covalently bonded to the rGO surface.
锂离⼦电池和钠离⼦电池(LIBs和SIBs)在低温下会出现显著的电化学性能退化。本研究通过在600和700°C下对钼酸铵和氧化⽯墨烯(GO)进⾏快速热解,制备出了具有前景的混合阳极。透射电⼦显微镜显⽰,MoS微晶沿还原氧化⽯墨烯(rGO)层的表⾯取向或垂直于其表⾯形成。X射线光电⼦能谱发现,MoS/rGO混合物中的各组分通过共价C-S键相连。由于样品中存在过量的硫,MoS/rGO_600混合物在LIBs中,在0.1 A/g的电流密度以及25°C、0°C和-20°C的温度下,分别表现出1370 mAh/g、835 mAh/g和711 mAh/g的较⾼⽐容量。将电流密度增加到2 A/g时,在25°C和-20°C下分别保留了78%和34%的容量。在SIBs中,MoS/rGO_700混合物表现出更具前景的结果,在0.1 A/g时达到550 mAh/g,在2 A/g时达到400 mAh/g,⽽将温度降低到-20°C时分别保留了48%和17%的容量。这种良好的SIB性能归因于样品中富含与rGO表⾯共价键合的垂直取向MoS层。