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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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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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[46] Bian, X. F.; Ge, S. X.; Pang, Q.; Zhu, K.; Wei, Y. J.*; Zou, B.; Du, F.; Zhang, D.; Chen, G., A novel lithium difluoro(oxalate) borate and lithium hexafluoride phosphate dual-salt electrolyte for Li-excess layered cathode material. Journal of Alloys and Compounds 2018,736, 136-142.
[47] Shan, Q. M.; Mu, X. P.; Alhabed, M.; Shuk, C. E.; Pang, D.; Zhao, X.; Chu, X. F.; Wei, Y. J.; Du, F., Chen G.; Gogotsi, Y., Two-dimensional vanadium carbide (V2C) MXene as electrode for supercapacitors with aqueous electrolytes. Electrochemistry Communications 2018,96, 103-107.
[48] Zhu, K.; Guo, S. H.; Li, Q.; Wei, Y. J.; Chen, G.; Zhou, H. S., Tunable Electrochemistry via Controlling Lattice Water in Layered Oxides of Sodium-Ion Batteries. ACS applied materials & interfaces 2017,9 (40), 34909-34914.
[49] Zhao, Y. Y.; Wei, Z. X.; Pang, Q.; Wei, Y. J.*; Cai, Y. M.; Fu, Q.; Du, F.; Sarapulova, A.; Ehrenberg, H.; Liu, B. B.; Chen, G., NASICON-Type Mg0.5Ti2(PO4)(3) Negative Electrode Material Exhibits Different Electrochemical Energy Storage Mechanisms in Na-Ion and Li-Ion Batteries. ACS applied materials & interfaces 2017,9 (5), 4709-4718.
[50] Zhao, Y. Y.; Pang, Q.; Wei, Y. J.*; Wei, L. Y.; Ju, Y. M.; Zou, B.; Gao, Y.; Chen, G., Co9S8/Co as a High-Performance Anode for Sodium-Ion Batteries with an Ether-Based Electrolyte. ChemSusChem 2017,10 (23), 4778-4785.
[51] Zhao, Y. Y.; Pang, Q.; Meng, Y.; Gao, Y.; Wang, C. Z.; Liu, B. B.; Wei, Y. J.*; Du, F.; Chen, G., Self-Assembled CoS Nanoflowers Wrapped in Reduced Graphene Oxides as the High-Performance Anode Materials for Sodium-Ion Batteries. Chemistry-a European Journal 2017,23 (53), 13150-13157.
[52] Zhao, W. J.; Wang, X. F.*; Zheng, E. Q.; Wei, Y. J.*; Sanehira, Y.; Chen, G., High capacity WO3 film as efficient charge collection electrode for solar rechargeable batteries. Journal of Power Sources 2017,350, 28-34.
[53] Zhang, T.; Yue, H. J.; Qiu, H. L.; Wei, Y. J.; Wang, C. Z.; Chen, G.; Zhang, D., Nano-particle assembled porous core-shell ZnMn2O4 microspheres with superb performance for lithium batteries. Nanotechnology 2017,28 (10).
[54] Zhang, T.; Qiu, H. L.; Zhang, M.; Fang, Z. B.; Zhao, X. S.; Wang, L.; Chen, G.; Wei, Y. J.; Yue, H. J.; Wang, C. Z.; Zhang, D., A unique 2D-on-3D architecture developed from ZnMn2O4 and CMK-3 with excellent performance for lithium ion batteries. Carbon 2017,123, 717-725.
[55] Zhang, T.; Liang, H.; Xie, C. D.; Qiu, H. L.; Fang, Z. B.; Wang, L.; Yue, H. J.; Chen, G.; Wei, Y. J.; Wang, C. Z.; Zhang, D., Morphology-controllable synthesis of spinel zinc manganate with highly reversible capability for lithium ion battery. Chemical Engineering Journal 2017,326, 820-830.
[56] Yu, D. X.; Pang, Q.; Gao, Y.; Wei, Y. J.*; Wang, C. Z.; Chen, G.; Du, F, Hierarchical flower-like VS2 nanosheets - A high rate-capacity and stable anode material for sodium-ion battery. Energy Storage Materials 2017,11, 1-7.
[57] Zhang, M. N.; Gao, Y.; Chen, N.; Ge, X.; Chen, H.; Wei, Y. J.; Du, F.; Chen, G.; Wang, C. Z., Electrochemical Performance and Storage Mechanism of Ag2Mo2O7 Micro-rods as the Anode Material for Lithium-Ion Batteries. Chemistry-a European Journal 2017,23 (21), 5148-5153.
[58] Zhang, D.; Li, T. T.; Qiu, H. L.; Wei, Y. J.; Wang, C. Z.; Chen, G.; Yue, H. J., Preparation and Characterization of N-doped Li2FeSiO4/C Cathode Materials for Lithium Ion Batteries. Chemical Journal of Chinese Universities-Chinese 2017,38 (9), 1633-1638.
[59] Yang, X. Y.; Zhou, B.; Wei, Y. J.; Zou, B., Solution synthesis of conveyor-like MnSe nanostructured architectures with an unusual core/shell magnetic structure. Crystengcomm 2017,19 (24), 3331-3337.
[60] Yang, X. Y.; Zhou, B.; Liu, C.; Sui, Y. M.; Xiao, G. J.; Wei, Y. J.; Wang, X.; Zou, B., Unravelling a solution-based formation of single-crystalline kinked wurtzite nanowires: The case of MnSe. Nano Research 2017,10 (7), 2311-2320.
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