Sukhanova Ekaterina V, Bereznikova Liudmila A, Manakhov Anton M, Al Qahtani Hassan S, Popov Zakhar I
Laboratory of Acoustic Microscopy, Emanuel Institute of Biochemical Physics RAS, 119334 Moscow, Russia.
Aramco Innovations LLC, Aramco Research Center, 119234 Moscow, Russia.
Membranes (Basel). 2022 Nov 16;12(11):1156. doi: 10.3390/membranes12111156.
Currently, new nanomaterials for high-capacity lithium-ion batteries (LIBs) and sodium- ion batteries (SIBs) are urgently needed. Materials combining porous structure (such as representatives of metal-organic frameworks) and the ability to operate both with lithium and sodium (such as transition-metal dichalcogenides) are of particular interest. Our work reports the computational modelling of a new A'-MoS structure and its application in LIBs and SIBs. The A'-MoS monolayer was dynamically stable and exhibited semiconducting properties with an indirect band gap of 0.74 eV. A large surface area, together with the presence of pores resulted in a high capacity of the A'-MoS equal to ~391 mAg at maximum filling for both Li and Na atoms. High adsorption energies and small values of diffusion barriers indicate that the A'-MoS is promising in the application of anode material in LIBs and SIBs.
目前,迫切需要用于高容量锂离子电池(LIBs)和钠离子电池(SIBs)的新型纳米材料。兼具多孔结构(如金属有机框架材料的代表)以及与锂和钠都能发生作用的能力(如过渡金属二硫属化物)的材料尤其受到关注。我们的工作报道了一种新型A'-MoS结构的计算模型及其在LIBs和SIBs中的应用。A'-MoS单层结构动态稳定,具有半导体特性,间接带隙为0.74电子伏特。较大的表面积以及孔隙的存在使得A'-MoS具有高容量,在锂原子和钠原子最大填充量时,其容量约为391 mAg。高吸附能和低扩散势垒值表明,A'-MoS在LIBs和SIBs的负极材料应用中具有潜力。