摘要
Light-involved Li-O2 batteries have received widespread attention in recent years. However, slow reaction kinetics and high charge/discharge overpotentials at high current densities, as well as rapid recombination of photogenerated holes and electrons have hindered their further development. In this study, we propose a design strategy to grow Fe2O3 rice grains in situ on α-MoO3 nanorods to fabricate heterostructures for Li-O2 batteries at high current densities. The heterostructure α-MoO3@Fe2O3 serves as dual-function cathode catalysts for light-involved Li-O2 batteries by facilitating oxygen reduction/oxidation reactions and enhancing the separation of photogenerated charges, thereby effectively improving photoelectrocatalytic performance. Under light irradiation conditions, the heterostructure α-MoO3@Fe2O3 exhibits low charge/discharge overpotential (0.99 V) while demonstrating good cycling stability (stable cycling for 120 cycles at a high current density of 0.5 mA cm−2 with a fixed capacity of 0.5 mAh cm−2) and good rate performance, which significantly better than that was reported the currently popular light-involved Li-O2 batteries under a high current density.
源语言 | 英语 |
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文章编号 | 160626 |
期刊 | Applied Surface Science |
卷 | 670 |
DOI | |
出版状态 | 已出版 - 15 10月 2024 |