Zhao Erqing, Guo Yudi, Zhang Awei, Wang Hongliang, Xu Guangri
School of Chemistry and Chemical Engineering, Henan Institute of Science and Technology, Xinxiang 453003, China.
School of Chemistry and Materials Engineering, Xinxiang University, Xinxiang 453003, China.
Nanoscale. 2022 Jan 20;14(3):890-897. doi: 10.1039/d1nr06636f.
The polyethylene oxide (PEO) solid electrolyte is a promising candidate for all solid state lithium-ion batteries (ASSLIBs), but its low ionic conductivity and poor interfacial compatibility against lithium limit the rate and cycling performance of the cell. Herein, the novel and efficient TiO@polydopamine (PDA) fillers have been synthesized by coating PDA onto the surface of the TiO nanofibers, which are then incorporated into PEO matrices to form the composite electrolyte. The composite electrolyte displays a higher ionic conductivity of 4.36 × 10 S cm, a wider electrochemical window up to about 5 V and a higher of 0.190 at 55 °C compared to the PEO electrolyte. Additionally, the Li/composite electrolyte/Li batteries show a stable Li plating/stripping cycle performance, indicating good interfacial compatibility between the composite electrolyte and lithium. Thus, the LiFePO/Li ASSLIBs display a fantastic rate performance and cycling stability, and deliver superior discharge specific capacities of 153.83 and 136.45 mA h g at current densities of 0.5C and 2C, achieving good capacity retentions of 93.27% and 91.23% at 0.5C and 1C after 150 cycles, respectively. Therefore, the PEO-TiO@PDA composite electrolyte is a potential solid electrolyte for ASSLIBs.
聚环氧乙烷(PEO)固体电解质是全固态锂离子电池(ASSLIBs)的一个有前景的候选材料,但其低离子电导率和与锂较差的界面相容性限制了电池的倍率和循环性能。在此,通过将聚多巴胺(PDA)包覆在TiO纳米纤维表面合成了新型高效的TiO@聚多巴胺(PDA)填料,然后将其掺入PEO基体中形成复合电解质。与PEO电解质相比,该复合电解质在55℃时显示出更高的离子电导率,为4.36×10 S cm,更宽的电化学窗口高达约5 V,以及更高的0.190。此外,Li/复合电解质/Li电池显示出稳定的锂电镀/剥离循环性能,表明复合电解质与锂之间具有良好的界面相容性。因此,LiFePO/Li ASSLIBs表现出出色的倍率性能和循环稳定性,在0.5C和2C的电流密度下分别具有153.83和136.45 mA h g的优异放电比容量,在150次循环后,在0.5C和1C下分别实现了93.27%和91.23%的良好容量保持率。因此,PEO-TiO@PDA复合电解质是ASSLIBs的一种潜在固体电解质。