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[2] Jianxun Zhao, Xiaojie Zhai, Xing Tao, Zhe Li, Qingshuang Wang, Wanqiang Liu*, Limin Wang, Improved electrochemical hydrogen storage capacity of Ti45Zr38Ni17 quasicrystal by addition of ZrH2, Journal of Materials Science & Technology 34 (2018) 995-998.
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[4] Peng Chen, Zexi Wang, Bingyu Zhang, Heng Liu, Wanqiang Liu*, Jianxun Zhao*, Zhihua Ma, Wenyue Dong, Zhongmin Su, Reduced graphene oxide/TiO2(B) nanocomposite modified separator as an efficient inhibitor of polysulfide shuttling in Li-S batteries, RSC advance, 10 (2020) 4538-4544.
[5] Heng Liu, Wanqiang Liu*, Yan Sun, Peng Chen, Jianxun Zhao*, Xin Guo, Zhongmin Su,Preparation and electrochemical hydrogen storage properties of Ti49Zr26Ni25 alloy covered with porous polyaniline, International Journal of Hydrogen Energy, 45 (2020) 11675-11685.
[6] Heng Liu, LiyuanTan, Yalan Guo, Peng Chen, Shang Gao, Zhongmin Su, Wanqiang Liu*, Jianxun Zhao*, Fabrication and electrochemical hydrogen storage performance of Ti49Zr26Ni25 alloy covered with Cd/Pd core/shell particles, International Journal of Hydrogen Energy, 44 (2019) 24800-24809.
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[10] Heng Liu, Xiaojie Zhai, Zhe Li, Xing Tao, Shang Gao, Jianxun Zhao*, Wanqiang Liu*, Effect of mesoporous α-Fe2O3 nanoparticles doping on the structure and electrochemical hydrogen storage properties of Co0.9Cu0.1Si alloy, Journal of Alloys and Compounds,755 (2018) 147-153.
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[12] Jianxun Zhao, Jian Lv, Dayong Liu, Wanqiang Liu, Heng Liu,Peng Chen, Xinwei Wang, Yong Cheng, Xin Guo, The different effect of Co3O4 or/and carbon fiber originated from biomass on the electrochemical hydrogen storage performance of Co2B alloy, International Journal of Hydrogen Energy, 47(2022)490-500.
[13] Haili Zhao, Junkai Zhang, Hong Sheng Jia, Jianxun Zhao*, Peng Chen, Heng Liu, Yongjin Zou f, Xin Guo c, Wanqiang Liu**, Xinwei Wang, Effect of flower-like Ni/C nanocrystal on electrochemical hydrogen storage properties of Co–P alloy, Journal of Physics and Chemistry of Solids, 161 (2022) 110496.