Cao Shiyu, Xiang Yanhong, Zou Qiuling, Jiang Youliang, Zeng Hanzhang, Li Jian, Wu Jianhua, Wu Xiangsi, Wu Xianwen, Xiong Lizhi
School of Physics and Electrical Engineering, Jishou University Jishou 416000 P. R. China
Loudi Technician Institute Loudi 417100 P. R. China.
RSC Adv. 2023 Aug 14;13(35):24385-24392. doi: 10.1039/d3ra01816d. eCollection 2023 Aug 11.
To alleviate the depletion of lithium resources and improve battery capacity and rate capacity, the development of aqueous zinc-ion batteries (AZIBs) is crucial. The open channels monoclinic structure LiV(PO) is conducive to the transfer and diffusion of guest ions, making it a promising cathode material for AZIBs. Therefore, in this study, nanoneedles and particles LiV(PO) cathode materials for AZIBs were prepared by a hydrothermal assisted sol-gel method, and the effect of synthesized pH values was studied. XRD results show that all samples had the monoclinic structure, and the LiV(PO) sample prepared at pH = 7 exhibits (LVP-pH7) the highest peak tips and narrowest peak widths. SEM images demonstrate that all samples have the morphology character of randomly oriented needles and irregular particles, with the LVP-pH7 sample having more needle-like particles that contribute to ion diffusion. EDS results show uniform distribution of P, V, and O elements in the LVP-pH7 sample, and no obvious aggregation phenomenon is observed. Electrochemical tests have shown that the LVP-pH7 sample exhibits excellent cycling performance (97.37% after 50 cycles at 200 mA g) and rate ability compared to other samples. The CV test results showed that compared with other samples, the LVP-pH7 sample had the most excellent ionic diffusion coefficient (2.44 × 10 cm s). Additionally, the of LVP-pH7 is the lowest (319.83 Ω) according to the findings of EIS and Nyquist plot fitting, showing a decreased charge transfer resistance and raising the kinetics of the reaction.
为了缓解锂资源的枯竭并提高电池容量和倍率性能,水系锌离子电池(AZIBs)的开发至关重要。开放通道的单斜结构LiV(PO)有利于客体离子的迁移和扩散,使其成为一种有前景的AZIBs正极材料。因此,在本研究中,通过水热辅助溶胶-凝胶法制备了用于AZIBs的纳米针状和颗粒状LiV(PO)正极材料,并研究了合成pH值的影响。XRD结果表明,所有样品均具有单斜结构,在pH = 7时制备的LiV(PO)样品(LVP-pH7)具有最高的峰尖和最窄的峰宽。SEM图像表明,所有样品均具有随机取向的针状和不规则颗粒的形态特征,LVP-pH7样品具有更多有助于离子扩散的针状颗粒。EDS结果表明,P、V和O元素在LVP-pH7样品中分布均匀,未观察到明显的聚集现象。电化学测试表明,与其他样品相比,LVP-pH7样品表现出优异的循环性能(在200 mA g下50次循环后为97.37%)和倍率性能。CV测试结果表明,与其他样品相比,LVP-pH7样品具有最优异的离子扩散系数(2.44×10 cm s)。此外,根据EIS和奈奎斯特图拟合的结果,LVP-pH7的(此处原文似乎缺失相关内容)最低(319.83 Ω),表明电荷转移电阻降低,反应动力学提高。