[1] Xiu-Fen Ma, Hong-Yi Li, Fusheng Pan, et al. H2O-Mg2+ waltz-like shuttle enables high-capacity and ultralong-life magnesium-ion batteries[J]. Advanced Science, 2024, 11, 2401005(SCI中科院/JCR一区TOP,影响因子:14.1)
[2] Xiu-Fen Ma, Hong-Yi Li, Fusheng Pan, et al. Anisotropy of V3O7 nanobelts enables ultralong cycling life of magnesium ion battery[J]. Journal of Magnesium and Alloys, 2024, 13, 41。(SCI中科院/JCR一区TOP,影响因子:13.8,已入选ESI高被引论文和ESI热点论文)
[3] Xiu-Fen Ma, Hong-Yi Li, Fusheng Pan, et al. A critical review of vanadium-based electrode materials for rechargeable magnesium batteries[J]. Journal of Materials Science & Technology, 2023, 153: 56-74.(SCI中科院/JCR一区TOP,影响因子:14.3)
[4] Xiu-Fen Ma, Hong-Yi Li, Fusheng Pan, et al. Switchable and Strain-Releasable Mg-Ion Diffusion Nanohighway Enables High-Capacity and Long-Life Pyrovanadate Cathode[J]. Small, 2022, 18:2202250.(SCI中科院/JCR一区TOP,影响因子:15,15)
[5] Xiu-Fen Ma, Hong-Yi Li, Fusheng Pan, et al. Enhancing Capacity and Rate Performance of Lamellar V2O5 Cathode Materials by Modulating V 3d Orbital Splitting [J]. PRX energy, 2025,4,033008.