代表性论文及著作
1.撰写Elsevier出版社的《Encyclopedia of Electrochemical Power Sources (Second Edition)》中Lithium Battery Safety| Overview这一章节.
2.Yiping He, Tangli Chen, Yuelin Zhang, Junxian Hou*, Xuning Feng, Languang Lu, Minggao Ouyang et al. EC-Less Electrolytes for High-Safety and Long-Life Nickel-Rich Lithium-Ion Batteries. Advanced Functional Materials, 2025, e17363.
3.Junxian Hou, Liqi Zhao, Xuning Feng*, Cheng Bao*, Minggao Ouyang et al. Low-Reactivity Electrolytes Achieve Safe and Durable Energy-Dense NCM955|SiC Pouch Cells, Advanced Energy Materials, 2025, e04009.
4.Qinyu Shi, Junxian Hou*, Xuning Feng, Lanquang Lu, Minggao Ouyang et al. Lean electrolytes enhancing intrinsicsafety of energydense nickel-rich lithium-ion batteries. Journal of Energy Storage, 2025, 118165.
5.Junxian Hou, Yinan Ma, Daihua Cao, Liqi Zhao, Xuning Feng*, Cheng Bao*, Minggao Ouyang et al. EC-Less High-Entropy Electrolytes Enabling High-Safety and Durable Ni-Rich Lithium-Ion Batteries. Small, 2025.
6.Liqi Zhao, Junxian Hou*, Xuning Feng, Lanquang Lu, Minggao Ouyang et al. The trade-off characteristic between battery thermal runaway and combustion. Energy Storage Materials, 2024, 69:103380.
7.Junxian Hou, Qinyu Shi, Chengshan Xu, Xuning Feng*, Minggao Ouyang et al. Temperature-Inert Interface Enables Safe and Practical Energy-Dense LiNi0.91Co0.07Mn0.02O2 Pouch Cells. Advanced Energy Materials, 2024, 2402638.
8.Junxian Hou*, Li Wang*, Xuning Feng*, Junpei Terada, Minggao Ouyang* et al. Thermal runaway of lithium-ion batteries employing flame-retardant fluorinated electrolytes. Energy Environmental Materials, 2022, 0, 1-7.
9.Junxian Hou, Xuning Feng*, Li Wang*, Minggao Ouyang* et.al. Unlocking the self-supported thermal runaway of high-energy lithium-ion batteries. Energy Storage Materials. 2021, 39, 395-402.
10.Junxian Hou, Languang Lu, Li Wang*, Minggao Ouyang* et al. Thermal runaway of Lithium-ion batteries employing LiN(SO2F)2-based concentrated electrolytes. Nature Communications. 2020, 11:5100.