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魏英进
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( 教授 )
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的个人主页 https://teachers.jlu.edu.cn/WeiYingjin/zh_CN/index.htm
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教授
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性别 :
男
毕业院校 :
Jilin University
学历 :
博士研究生毕业
学位 :
博士
在职信息 :
在职
所在单位 :
物理学院
学科 :
凝聚态物理
办公地点 :
前卫校区唐敖庆楼B802
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[61] Xu, M.; Sui, Y. M.; Xiao, G. J.; Yang, X. Y.; Wei, Y. J.; Zou, B., Kinetically controlled synthesis of nanoporous Au and its enhanced electrocatalytic activity for glucose-based biofuel cells. Nanoscale 2017,9 (7), 2514-2520.
[62] Wang, H. B.; Wang, R. W.; Liu, L. J.; Jiang, S.; Ni, L.; Bie, X. F.; Yang, X.; Hu, J. T.; Wang, Z. Q.; Chen, H. B.; Zhu, L. K.; Zhang, D. L.; Wei, Y. J.; Zhang, Z. T.; Qiu, S. L.; Pan, F., In-situ self-polymerization restriction to form core-shell LiFePO4/C nanocomposite with ultrafast rate capability for high-power Li-ion batteries. Nano Energy 2017,39, 346-354.
[63] Wang, D. X.; Bie, X. F.; Fu, Q.; Dixon, D.; Bramnik, N.; Hu, Y. S.; Fauth, F.; Wei, Y. J.; Ehrenberg, H.; Chen, G.; Du, F., Sodium vanadium titanium phosphate electrode for symmetric sodium-ion batteries with high power and long lifespan. Nature communications 2017,8.
[64] Wang, D. S.; Liu, Y. H.; Meng, X.; Wei, Y. J.*; Zhao, Y. Y.; Pang, Q.; Chen, G., Two-dimensional VS2 monolayers as potential anode materials for lithium-ion batteries and beyond: first-principles calculations. Journal of Materials Chemistry A 2017,5 (40), 21370-21377.
[65] Wang, D. S.; Gao, Y.; Liu, Y. H.; Jin, D.; Gogotsi, Y.; Meng, X.; Du, F.; Chen, G.; Wei, Y. J.*, First-Principles Calculations of Ti2N and Ti2NT2 (T = O, F, OH) Monolayers as Potential Anode Materials for Lithium-Ion Batteries and Beyond. Journal of Physical Chemistry C 2017,121 (24), 13025-13034.
[66] Wang, D. S.; Gao, Y.; Liu, Y. H.; Gogotsi, Y.; Meng, X.; Chen, G.; Wei, Y. J.*, Investigation of chloride ion adsorption onto Ti2C MXene monolayers by first-principles calculations. Journal of Materials Chemistry A 2017,5 (47), 24720-24727.
[67] Qiu, H. L.; Yue, H. J.; Wang, X.; Zhang, T.; Zhang, M.; Fang, Z. B.; Zhao, X. S.; Chen, G.; Wei, Y. J.; Wang, C. Z.; Zhang, D., Titanium-doped Li2FeSiO4/C composite as the cathode material for lithium-ion batteries with excellent rate capability and long cycle life. Journal of Alloys and Compounds 2017,725, 860-868.
[68] Pang, Q.; Zhao, Y. Y.; Bian, X. F.; Ju, Y. M.; Wang, X. D.; Wei, Y. J.*; Liu, B. B.; Du, F.; Wang, C. Z.; Chen, G., Hybrid graphene@MoS2@TiO2 microspheres for use as a high performance negative electrode material for lithium ion batteries. Journal of Materials Chemistry A 2017,5 (7), 3667-3674.
[69] Pang, Q.; Gao, Y.; Zhao, Y. Y.; Ju, Y. M.; Qiu, H. L.; Wei, Y. J.*; Liu, B. B.; Zou, B.; Du, F.; Chen, G., Improved Lithium-Ion and Sodium-Ion Storage Properties from Few-Layered WS2 Nanosheets Embedded in a Mesoporous CMK-3 Matrix. Chemistry-a European Journal 2017,23 (29), 7074-7080.
[70] Meng, Y.; Wang, D. S.; Zhao, Y. Y.; Lian, R. Q.; Wei, Y. J.*; Bian, X. F.; Gao, Y.; Du, F.; Liu, B. B.; Chen, G., Ultrathin TiO2-B nanowires as an anode material for Mg-ion batteries based on a surface Mg storage mechanism. Nanoscale 2017,9 (35), 12934-12940.
[71] Meng, Y.; Wang, D. S.; Wei, Y. J.*; Zhu, K.; Zhao, Y. Y.; Bian, X. F.; Du, F.; Liu, B. B.; Gao, Y.; Chen, G., Competition between insertion of Li+ and Mg2+: An example of TiO2-B nanowires for Mg rechargeable batteries and Li+/Mg2+ hybrid-ion batteries. Journal of Power Sources 2017,346, 134-142.
[72] Gao, S.; Zhang, D.; Zhu, K.; Tang, J. A.; Gao, Z. M.; Wei, Y. J.; Chen, G.; Gao, Y., Flexible V2O3/carbon nano-felts as free-standing electrode for high performance lithium ion batteries. Journal of Alloys and Compounds 2017,702, 13-19.
[73] Bian, X. F.; Gao, Y.; Fu, Q. A.; Indris, S.; Ju, Y. M.; Meng, Y.; Du, F.; Bramnik, N.; Ehrenberg, H.; Wei, Y. J.*, A long cycle-life and high safety Na+/Mg2+ hybrid-ion battery built by using a TiS2 derived titanium sulfide cathode. Journal of Materials Chemistry A 2017,5 (2), 600-608.
[74] Zhu, K.; Zhang, Y.; Qiu, H. L.; Meng, Y.; Gao, Y.; Meng, X.; Gao, Z. M.; Chen, G.; Wei, Y. J., Hierarchical Fe3O4 microsphere/reduced graphene oxide composites as a capable anode for lithium-ion batteries with remarkable cycling performance. Journal of Alloys and Compounds 2016,675, 399-406.
[75] Zhu, K.; Wang, Y.; Tang, J. A.; Qiu, H. L.; Meng, X.; Gao, Z. M.; Chen, G.; Wei, Y. J.; Gao, Y., In situ growth of MnO2 nanosheets on activated carbon fibers: a low-cost electrode for high performance supercapacitors. Rsc Advances 2016,6 (18), 14819-14825.
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