Advanced Materials · 2024 · 21 citations · 45 references
To meet the growing demand for energy storage, lithium-ion batteries (LIBs) with fast charging capabilities has emerged as a critical technology. The electrode materials affect the rate performance significantly. Organic electrodes with structural flexibility support fast lithium-ion transport and are considered promising candidates for fast-charging LIBs. However, it is a challenge to create organic electrodes that can cycle steadily and reach high energy density in a few minutes. To solve this issue, accelerating the transport of electrons and lithium ions in the electrode is the key. Here, it is demonstrated that a ferrocene-based polymer electrode (Fc-SO<sub>3</sub>Li) can be used as a fast-charging organic electrode for LIBs. Thanks to its molecular architecture, LIBs with Fc-SO<sub>3</sub>Li show exceptional cycling stability (99.99% capacity retention after 10 000 cycles) and reach an energy density of 183 Wh kg<sup>-1</sup> in 72 seconds. Moreover, the composite material through in situ polymerization with Fc-SO<sub>3</sub>Li and 50 wt % carbon nanotube (denoted as Fc-SO<sub>3</sub>Li-CNT50) achieved optimized electron and ion transport pathways. After 10 000 cycles at a high current density of 50C, it delivered a high energy density of 304 Wh kg<sup>-1</sup>. This study provides valuable insights into designing cathode materials for LIBs that combine high power and ultralong cycle life.
45
Challenges and opportunities towards fast-charging battery materials
Yayuan Liu, Yangying Zhu, Yi Cui · Nature Energy · 2019 · 1.7K citations · Full text
Niobium tungsten oxides for high-rate lithium-ion energy storage
Kent J. Griffith, Kamila M. Wiaderek, Giannantonio Cibin et al. · Nature · 2018 · 820 citations · Full text
Fast charging of energy-dense lithium-ion batteries
Chao‐Yang Wang, Teng Liu, Xiaoguang Yang et al. · Nature · 2022 · 819 citations
Boosting lithium storage in covalent organic framework via activation of 14-electron redox chemistry
Zhendong Lei, Qinsi Yang, Yi Xu et al. · Nature Communications · 2018 · 674 citations · Full text