1. Z. Yang, J. He, W.-H. Lai, J. Peng, X.-H. Liu, X.-X. He, X.-F. Guo, L. Li, Y. Qiao, J.-M. Ma, M.-H. Wu, S.-L. Chou, Fire-Retardant, Stable-Cycling and High-Safety Sodium Ion Batteries, Angew. Chem. Int. Ed., 2021,12382, DOI: 10.1002/anie.202112382
5 X.-H. Liu, W.-H. Lai and S.-L. Chou, The application of hollow micro-/nanostructured cathodes for sodium-ion batteries, Mater. Chem. Front., 2020, 4, 1289–1303.
6 Z. Yang, X.-H. Liu, X.-X. He, W.-H. Lai, L. Li, Y. Qiao, S.-L. Chou and M. Wu, Rechargeable Sodium‐Based Hybrid Metal‐Ion Batteries toward Advanced Energy Storage, Adv. Funct. Mater., 2021, 31, 2006457.
7 Y.-Y. Dai, C.-M. Xu, X.-H. Liu, X.-X. He, Z. Yang, W.-H. Lai, L. Li, Y. Qiao and S.-L. Chou, Manipulating metal–sulfur interactions for achieving high‐performance S cathodes for room temperature Li/Na–sulfur batteries, Carbon Energy, 2021, 3, 253–270.
8 X.-X. He, J.-H. Zhao, W.-H. Lai, R. Li, Z. Yang, C. Xu, Y. Dai, Y. Gao, X.-H. Liu, L. Li, G. Xu, Y. Qiao, S.-L. Chou and M. Wu, Soft-Carbon-Coated, Free-Standing, Low-Defect, Hard-Carbon Anode To Achieve a 94% Initial Coulombic Efficiency for Sodium-Ion Batteries, ACS Appl. Mater. Interfaces, 2021, 13, 44358–44368.
9 Z.-G. Liu, R. Du, X.-X. He, J.-C. Wang, Y. Qiao, L. Li and S. Chou, Recent progress on intercalation-based anode materials for low-cost sodium ion batteries, ChemSusChem, 2021, 14, 3724.
10 Y. Liu, D. He, Y. Cheng, L. Li, Z. Lu, R. Liang, Y. Fan, Y. Qiao and S. Chou, A Heterostructure Coupling of Bioinspired, Adhesive Polydopamine, and Porous Prussian Blue Nanocubics as Cathode for High-Performance Sodium-Ion Battery, Small, 2020, 16, 1906946.
11. X.-X. He, X.-H. Liu, Z. Yang, H. Zhang, L. Li, G. Xu, Y. Qiao, S.-L. Chou and M. Wu, Research progress of flexible sodium-ion batteries derived from renewable polymer materials, Electrochemistry Communications, 2021, 128, 107067.