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[专家学者] 辽宁大学化学院葛昊

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发表于 2018-2-14 07:45:19 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
葛昊,男,工学博士,副教授,硕士生导师。研究方向为应用电化学,主要从事电极材料的电极反应过程及改性机制研究,着眼于利用现代电化学分析测试手段及材料表征技术阐明材料结构变化对其电化学行为的影响。博士学位论文《尖晶石型钛酸锂的制备及电化学行为》被评为哈尔滨工业大学优秀博士论文。发表研究论文30余篇,其中SCI收录20余篇。
研究领域:1.纳米电极材料
2.锂离子电池
3.应用电化学
近期发表的主要论文:
1.        HaoGe, Luxia Cui, Bing Zhang, Tianyi Ma andXi-Ming Song. AgQuantum Dots Promoted Li4Ti5O12/TiO2 Nanosheets with Ultrahigh ReversibleCapacity and Super Rate Performance for Power Lithium-Ion Batteries. J. Mater. Chem. A, 2016,4, 16886~16895. (IF=8.262)
2.        Hao Ge, Tingting Hao, Hannah Osgood, Bing Zhang, Li Chen, Luxia Cui, Xi-Ming Song*, Ogechi Ogoke, and Gang Wu*. AdvancedMesoporous Spinel Li4Ti5O12/rGO Compositeswith Increased Surface Lithium Storage Capability for High-Power Lithium-IonBatteries. ACS Appl. Mater. Interfaces., 2016, 8, 9162~9169. (IF=7.145)
3.        Hao Ge, Tingting Hao, Bing Zhang, Li Chen, Luxia Cui, Xi-Ming Song*. Nanoparticles-ConstructedSpinel Li4Ti5O12 with Extra SurfaceLithium Storage Capability towards Advanced Lithium-ion Batteries. Electrochim.Acta, 2016, 211, 119~125. (IF=4.803)
4.        HaoGe, Li Chen, Wei Yuan, Yu Zhang, Qingzhen Fan, Hannah Osgood, DanielMatera, Xi-Ming Song and Gang Wu. Unique mesoporous spinel Li4Ti5O12 nanosheetsas anode materials for lithium-ion batteries. J. Power source, 2015,297, 436~441. (IF=6.333)
5.        HaoGe, Hui Tian, Yangen Zhou, Shuyao Wu, Daliang Liu, Xianzhi Fu, Xi-MingSong*. Influence of Surface States on the Evaluation of the Flat Band Potentialof TiO2. ACS Appl. Mater. Interfaces., 2014, 6,2401~2406. (IF=7.145)
6.        HaoGe, Tingting Hao, Hui Tian, Ying Song, Hua Song, Daliang Liu, Shuyao Wu,Xi-Ming Song*. Hydrolysis-assisted synthesis of spherical spinel Li4Ti5O12 withadvanced electrochemical performances for power lithium-ions battery. CeramicsInternational 2014, 40, 14529–14532. (IF=2.758)
7.        H.Ge, H. Tian, H. Song, D. L. Liu, S. Y. Wu, X. C. Shi, X. Q. Gao, L. Lv, X.M. Song, Study on the energy band structure and photoelectrochemicalperformances of spinel Li4Ti5O12, MaterialsResearch Bulletin 2014, 61, 459~462. (IF=2.435)
8.        HaoGe, Li Chen, Shen Lin, Xicheng Shi, Xi-Ming Song*. Advancedelectrochemical performances of Li4Ti5O12/Ag preparedby a facile synthesis route. Ionics 2014, 20, 1189–1192. (IF=2.119)
9.        HaoGe, Ying Song, Hua Song, Hui Tian, Xi-Ming Song, Ning Li, Daliang Liu,Shuyao Wu, Xicheng Shi. Advanced chargeperformanceofpristineLi4Ti5O12 spinelforpowerlithium-ion battery Ceramics International 2015, 41,3869–3874. (IF=2.758)
10.     Hao Ge*, Ning Li, Deyu Li, Changsong Dai, DianlongWang. Study on the Theoretical Capacity of SpinelLithium Titanate Induced by Low-potential Intercalation. J. Phys. Chem.C. 2009, 113(16): 6324~6326. (IF=4.8)
11.     Hao Ge, Ning Li*, Deyu Li, Changsong Dai, DianlongWang. Electrochemical Characteristics of Spinel Li4Ti5O12Dischargedto 0.01V. Electrochem. Commun. 2008, 10(5):719~722. (IF=4.847)
12.     Hao Ge, Ning Li*, Deyu Li, Changsong Dai, DianlongWang. Study on the Effect of Li Doping in SpinelLi4+xTi5-xO12(0≤x≤0.2)Materials for Lithium-ion Batteries. Electrochem. Commun. 2008,10(7):1031~1034. (IF=4.847)

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