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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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[16] Xu, J.; Wang, D.; Lian, R.; Gao, X.; Liu, Y.; Yury, G.; Chen, G.; Wei, Y. J.*, Structural prediction and multilayer Li+ storage in two-dimensional VC2 carbide studied by first-principles calculations. Journal of Materials Chemistry A 2019, 7, (15), 8873-8881.
[17] Wang, D. S.; Zhao, S.; Li, F.; He, L.; Zhao, Y. Y.; Zhao, H. N.; Liu, Y. H.; Wei, Y. J.*; Chen, G.*, Insight into the Anchoring and Catalytic Effects of VO2 and VS2 Nanosheets as Sulfur Cathode Hosts for Li-S Batteries. ChemSusChem 2019, 12, (20), 4671-4678.
[18] Wang, D. S.; Li, F.; Lian, R. Q.; Xu, J.; Kan, D. X.; Liu, Y. H.; Chen, G.*; Gogotsi, Y.; Wei, Y. J.*, A General Atomic Surface Modification Strategy for Improving Anchoring and Electrocatalysis Behavior of Ti3C2T2 MXene in Lithium-Sulfur Batteries. Acs Nano 2019, 13, (10), 11078-11086.
[19] Mu, X. P.; Wang, D. S.; Du, F.; Chen, G.; Wang, C. Z.; Wei, Y. J.; Gogotsi, Y.; Gao, Y.; Dall'Agnese, Y., Revealing the Pseudo-Intercalation Charge Storage Mechanism of MXenes in Acidic Electrolyte. Advanced Functional Materials 2019, 29, (29) 1902953.
[20] Mamoor, M.; Lian, R.; Wang, D.; Meng, X.; Chen, G.; Wei, Y. J.*, Structure, charge transfer, and kinetic properties of NaVPO4F with Na+ extraction: a comprehensive first-principles study. Physical Chemistry Chemical Physics 2019, 21, (27), 14612-14619.
[21] Lian, R. Q.; Feng, J. R.; Wang, D. S.; Yang, Q. F.; Kan, D. X.; Mamoor, M.; Chen, G.; Wei, Y. J.*, Nucleation and Conversion Transformations of the Transition Metal Polysulfide VS4 in Lithium-Ion Batteries. ACS applied materials & interfaces 2019, 11, (25), 22307-22313.
[22] Lian, R. L.; Wang, D. S.; Yang, Q. F.; Kan, D. X.; Chen, G.; Gao, C. G.; Wei, Y. J.*, Potassium ion storage properties of Alpha-graphdiyne investigated by first-principles calculations. Electrochimica Acta 2019, 326.
[23] Lian, R.; Feng, J.; Wang, D.; Yang, Q.; Kan, D.; Mamoor, M.; Chen, G.; Wei, Y. J.*, Nucleation and Conversion Transformations of the Transition Metal Polysulfide VS4 in Lithium-Ion Batteries. ACS applied materials & interfaces 2019, 11, (25), 22307-22313.
[24] Jin, D.; Qiu, H. L.; Du, F.; Wei, Y. J.; Meng, X., Co-doped Na2FePO4F fluorophosphates as a promising cathode material for rechargeable sodium-ion batteries. Solid State Sciences 2019, 93, 62-69.
[25] Guo, Z. D.; Zhao, Y. Y.; Cai, Y. M.; Hou, P. G.; Zhao, L.; Wang, B.; Liu, B.; Wei, Y. J., A low-cost and energy-saving preparation method for silicon derived from rice husks and lithium ion battery applications. Materials Research Express 2019, 6, (4) 045505.
[26] Guo, P. L.; Su, A. Y.; Wei, Y. J.; Liu, X. K.; Li, Y.; Guo, F. F.; Li, J.; Hu, Z. Y.; Sun, J. Q., Healable, Highly Conductive, Flexible, and Nonflammable Supramolecular lonogel Electrolytes for Lithium-Ion Batteries. ACS applied materials & interfaces 2019, 11, (21), 19413-19420.
[27] Gao, X. Y.; Wang, D. S.; Lian, R. Q.; Kan, D. X.; Mamoor, M.; Wang, C. Z.*; Chen, G.; Gao, C. E.; Wei, Y. J.*, Electronic Properties, Phase Transformation, and Anionic Redox of Monoclinic Na2MnO3 Cathode Material for Sodium-Ion Batteries: First-Principle Calculations. Chemelectrochem 2019, 6, (15), 3987-3993.
[28] Fang, Y. Z.; Zhang, Y.; Zhu, K.; Lian, R. Q.; Gao, Y.; Yin, J. L.; Ye, K.; Cheng, K.; Yan, J.; Wang, G. L.; Wei, Y. J.; Cao, D. X., Lithiophilic Three -Dimensional Porous Ti3C2Tx-rGO Membrane as a Stable Scaffold for Safe Alkali Metal (Li or Na) Anodes. Acs Nano 2019, 13, (12), 14319-14328.
[29] Bian, X. F.; Liang, J. F.; Tang, X. F.; Li, R. X.; Kang, L.; Su, A. Y.; Su, X.; Wei, Y. J., A boron nitride-polyvinylidene fluoride-co-hexafluoropropylene composite gel polymer electrolyte for lithium metal batteries. Journal of Alloys and Compounds 2019, 803, 1075-1081.
[30] Zhao, X. S.; Yin, L. C.; Zhang, T.; Zhang, M.; Fang, Z. B.; Wang, C. Z.; Wei, Y. J.; Chen, G.; Zhang, D.; Sun, Z. H.; Li, F., Heteroatoms dual-doped hierarchical porous carbon-selenium composite for durable Li-Se and Na-Se batteries. Nano Energy 2018,49, 137-146.
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