Wang Yunxin, Liang Sisi, Tian Juncheng, Duan Huixian, Lv Ying, Wan Lijia, Huang Chunlai, Wu Musheng, Ouyang Chuying, Hu Junping
Nanchang Key Laboratory of Photoelectric Conversion and Energy Storage Materials, Nanchang Institute of Technology, Nanchang 330099, China.
Department of Physics, Laboratory of Computational Materials Physics, Jiangxi Normal University, Nanchang 330022, China.
Phys Chem Chem Phys. 2024 Jan 31;26(5):4455-4465. doi: 10.1039/d3cp05287g.
Storage capacity, average open circuit voltage (OCV), diffusion barrier, lattice parameter changes, are key indicators of whether a material would be suitable for use as a Li-ion or non-Li-ion battery (LIB or NLIB) anode. The rapid development of 2D materials over the past few decades has opened up new possibilities for these metrics. Using first-principles calculations, we prove that two 2D materials, TiB and SrB, show excellent performance in terms of the above metrics when used as anodes for LIBs or NLIBs. As detailed, TiB has an Li\Na\K\Ca storage capacity of 588 mA h g, 588 mA h g, 588 mA h g, and 1176 mA h g, respectively, and SrB has an Li\Na\K\Ca storage capacity of 308 mA h g, 308 mA h g, 462 mA h g, and 616 mA h g, respectively, and they show good electrical conductivity whether existing Li, Na, K or Ca is adsorbed or not. The diffusion barriers on both surfaces are low, indicating good rate performance. The average OCV is also very low. In particular, the lattice parameters of the two materials change very little during the embedding of Li\Na\K\Ca. For TiB the corresponding values are about 0.37% (Li), 0.33% (Na), 0.64% (K) and 0.03% (Ca), and for SrB the corresponding values are about 0.70% (Li), 0.16% (Na), 0.13% (K) and 0.004% (Ca), which imply zero strain-like character and great cycling performance. All the above results show that TiB and SrB monolayers are very promising Li\Na\K\Ca ion battery anodes.
存储容量、平均开路电压(OCV)、扩散势垒、晶格参数变化,是一种材料是否适合用作锂离子或非锂离子电池(LIB或NLIB)负极的关键指标。在过去几十年中,二维材料的快速发展为这些指标带来了新的可能性。通过第一性原理计算,我们证明了两种二维材料TiB和SrB在用作LIB或NLIB负极时,在上述指标方面表现出优异的性能。具体而言,TiB的Li\Na\K\Ca存储容量分别为588 mA h g、588 mA h g、588 mA h g和1176 mA h g,SrB的Li\Na\K\Ca存储容量分别为308 mA h g、308 mA h g、462 mA h g和616 mA h g,并且无论是否吸附有Li、Na、K或Ca,它们都表现出良好的导电性。两个表面的扩散势垒都很低,表明倍率性能良好。平均OCV也非常低。特别是,在Li\Na\K\Ca嵌入过程中,这两种材料的晶格参数变化很小。对于TiB,相应的值分别约为0.37%(Li)、0.33%(Na)、0.64%(K)和0.03%(Ca),对于SrB,相应的值分别约为0.70%(Li)、0.16%(Na)、0.13%(K)和0.004%(Ca),这意味着具有零应变样特性和出色的循环性能。上述所有结果表明,TiB和SrB单层是非常有前景的Li\Na\K\Ca离子电池负极。