8.Yanli Zhang, Wenjuan Zhang, Jiakun Zhou, Xiaoning Li, Wenzhang Zhou, Yanting Xie, Jing Mao* and Kehua Dai*. Research Development on Spinel Lithium Manganese Oxides Cathode Materials for Lithium Ion Batteries, Journal of The Electrochemical Society, 2023, 170, 090532.
7.Wenjuan Zhang, Yanli Zhang, Jiakun Zhou, Xiaoning Li, Wenzhang Zhou, Ding Zhang, Jing Mao* and Kehua Dai*. Optimizing Electrochemical Performance in Sodium-Ion Batteries using O3-type Na0.90Cu0.22Fe0.30Mn0.48O2 and Hard Carbon, Journal of The Electrochemical Society, 2023, 170, 070518.
6.Shao Weiwei, Zhao Beibei, Zhang Wenjuan, Feng Yan, Mao Wenfeng and Dai*Kehua. Study on the Reversible and Irreversible Heat Generation of the Lithium-Ion Battery with LiFePO4 Cathode, Fire Technol, 2022: 1-15.
5.Zhang Wenjuan, Shao Weiwei, Zhao Beibei, and Dai Kehua*, Research Progress of Li2FeSiO4 Cathode Materials for Lithium-Ion Batteries, Journal of The Electrochemical Society, 2022, 169, 070526.
4.Dai, Kehua*; Shao, Weiwei; Zhao, Beibei; Zhang, Wenjuan; Feng, Yan; Mao, Wenfeng; Ai, Guo; Liu, Gao; Mao, Jing*; Yang, Wanli*. Precisely quantifying bulk transition metal valence evolution in conventional battery electrode by inverse partial fluorescence yield. J. Energy Chem. 2022, 69, 363-368.
3.Zhuo, Zengqing#; Dai, Kehua#; Qiao, Ruimin#; Wang, Rui#; Wu, Jinpeng; Liu, Yali; Peng, Jiayue; Chen, Liquan; Chuang, Yi-de; Pan, Feng*; Shen, Zhi-xun; Liu, Gao; Li, Hong*; Devereaux, Thomas P.*; Yang, Wanli*, Cycling mechanism of Li2MnO3: Li-CO2 batteries and commonality on oxygen redox in cathode materials. Joule 2021, 5 (4), 975-997.
2.Zhuo, Zengqing#; Dai, Kehua#; Wu, Jinpeng; Zhang, Liang; Tamura, Nobumichi; Chuang, Yi-de; Feng, Jun; Guo, Jinghua; Shen, Zhi-xun; Liu, Gao*; Pan, Feng*; Yang, Wanli*, Distinct Oxygen Redox Activities in Li2MO3 (M = Mn, Ru, Ir). ACS Energy Lett. 2021, 6 (10), 3417-3424.
1.Dai, Kehua*; Mao, Jing; Zhuo, Zengqing; Feng, Yan; Mao, Wenfeng; Ai, Guo; Pan, Feng; Chuang, Yi-de; Liu, Gao*; Yang, Wanli*, Negligible Voltage Hysteresis with Strong Anionic Redox in Conventional Battery Electrode. Nano Energy 2020, 74, 104831.