Guo Zhendong, Dong Guangsheng, Zhang Man, Gao Musen, Shao Leijun, Chen Meng, Liu Hongli, Ni Mingchen, Cao Dianxue, Zhu Kai
College of Science, Northeast Electric Power University, Jilin, P. R China.
Key Laboratory of Superlight Materials and Surface Technology (Ministry of Education), College of Material Science and Chemical Engineering, Harbin Engineering University, Harbin, 150001, P. R. China.
Chem Asian J. 2023 Sep 15;18(18):e202300336. doi: 10.1002/asia.202300336. Epub 2023 Aug 9.
As post-lithium ion batteries, both sodium-ion batteries (SIBs) and potassium ion batteries (PIBs) possess great potential for large scale energy storage. However, the application of both SIBs and PIBs are hindered by the lack of suitable electrode materials. Here, we synthesized the sulfur decorated Ti C T (S-T C T ) MXene as electrode material for SIBs and PIBs. Thanks to the sulfur functional group and the formation of Ti-S bond, which facilitates the sodium in-/desertion and strengthens the potassium ion adsorption ability, as well as enhances ion reaction kinetics and improved structure stability, the S-T C T exhibit excellent sodium/potassium storage performance, high reversible capacities of 151 and 101 mAh g at 0.1 mA g were achieved for SIBs and PIBs, respectively. Moreover, the S-T C T exhibits remarkable long-term capacity stability at a high density of 500 mA g , providing an impressive storage of 88 mAh g for SIBs and 41 mAh g for PIBs even after 2000 cycles. This work could give a deep comprehension of the heteroatom modification influence on the MXene-based framework and promote the application of MXene electrodes.
作为后锂离子电池,钠离子电池(SIBs)和钾离子电池(PIBs)在大规模储能方面都具有巨大潜力。然而,SIBs和PIBs的应用都受到缺乏合适电极材料的阻碍。在此,我们合成了硫修饰的Ti C T(S-T C T)MXene作为SIBs和PIBs的电极材料。由于硫官能团以及Ti-S键的形成,这有利于钠离子的嵌入/脱出并增强钾离子吸附能力,同时提高离子反应动力学并改善结构稳定性,S-T C T展现出优异的钠/钾存储性能,在0.1 mA g时,SIBs和PIBs分别实现了151和101 mAh g的高可逆容量。此外,S-T C T在500 mA g的高密度下表现出显著的长期容量稳定性,即使在2000次循环后,SIBs仍能提供88 mAh g的可观存储量,PIBs则为41 mAh g。这项工作能够深入理解杂原子修饰对基于MXene的框架的影响,并促进MXene电极的应用。