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[专家学者] 中国地质大学(武汉)材料与化学学院材料系刘学琴

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发表于 2017-11-19 09:14:50 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
姓    :刘学琴  
性    :男  政治面貌:党员
籍    :湖北宜昌
出生日期:1986年10月
专    :材料科学与工程              
   地    :武汉市洪山区鲁磨路388号
电    :15971416700  邮    liuxq@cug.edu.cn
  ·教育背景                                                                          
   2006年9月 —— 2010年6月    中国地质大学   材料科学与工程   本科;
   2010年9月 —— 2016年6月    中国地质大学   材料科学与工程   博士(硕-博连读);
   2014年9月 —— 2016年5月    美国佐治亚理工 联合培养。
  ·所获奖励                                                                                        
   2014年 博士研究生国家奖学金;
   2014年 国家留学基金委“联合培养”资助;
   2012年 博士研究生国家奖学金;
   2012年 中国地质大学(武汉)优秀博士学位论文创新基金项目资助;
   2012年 中国地质大学第23届研究生科技论文报告会特等奖;
2012年 2012年武汉高校研究生化学学术报告竞赛三等奖。
2012年 锐鸣校友奖学金
_·学术任职____________
   Nanoscale Horizons Community Board Member
  ·学术论文及著作                                                                                                                                   
[1] Yang Wang, Xueqin Liu, Zhen Li, Ya Cao, Yinchang Li, Yanli Zhao. Constructing Synergetic Tri-Layered TiO2 Photoanode Based on Flexible Nanotube Array/Ti Substrate for Efficient Solar Cells. ChemNanoMat, 2017, 3: 58-64. (共同一作, Advanced Science News亮点报道)
[2] Xueqin Liu, James Ioccozia, Yang Wang, Xun Cui, Yihuang Chen, Shiqiang Zhao, Zhen Li, andZhiqun Lin, "Noble Metal-Metal Oxide Nanohybrids with Tailored Nanostructures for Efficient Solar Energy Conversion, Photocatalysis and Environmental Remediation”, Energy & Environmental Science,2017, 10: 385-644. (内封面, IF: 25.427, T1)                                                               
[3] Xueqin Liu, Zhen Li, Wen Zhao, Caixin Zhao, Yang Wang, Zhiqun Lin. A facile route to reduced graphene oxide-wrapped octahedral Cu2O with enhanced photocatalytic and photovoltaic performance. Journal of Materials Chemistry A, 2015, 3:19148. (IF: 8.262, T1)
[4] Xueqin Liu, Jianbo Yang, Wen Zhao, Yang Wang, Zhen Li, and Zhiqun Lin. A Simple Route to Reduced Graphene Oxide-Draped Nanocomposites with Markedly Enhanced Visible-Light Photocatalytic Performance. Small, 2016, 12: 4077-4085. (外封面; MaterialsViewsChina亮点报道,IF: 8.315, T1)
[5] Ming He, Xinchang Pang, Xueqin Liu, Beibei Jiang, Yanjie He, Henry Snaith, and Zhiqun Lin. Monodisperse Dual-Functional Upconversion Nanoparticles Enabled Near-Infrared Organolead Halide Perovskite Solar Cells. Angewandte Chemie International Edition, 2016, 55: 4280-4284. (IF: 11.709, T1)
[6] Xueqin Liu, Zhen Li, Wen Zhao, CaiXin Zhao, Jianbo Yang, Yang Wang. ZnO nanorod/Au composite arrays and their enhanced photocatalytic properties. Journal of Colloid and Interface Science, 2014, 432:170-175. (IF: 3.782, T2)
[7] Xueqin Liu, Zhen Li, CaiXin Zhao, Wen Zhao, Jianbo Yang, Yang Wang, Fei Li. Facile synthesis of core-shell CuO/Ag nanowires with enhanced photocatalytic and enhancement in photocurrent. Journal of Colloid and Interface Science, 2014, 419:9-16. (IF: 3.782, T2)
[8] Xueqin Liu, Fei Li, Huifang Wang, Jianbo Yang, Zhen Li, Yongqian Wang, and Hongyun Jin. Controllable Synthesis of Cu2O/Cu Composites with Stable Photocatalytic Properties, Journal of Nanoscience and Nanotechnology, 2014;14(6): 4108-4113. (IF:1.556, T3)
[9] Xueqin Liu, Fei Li, Yongqian Wang, Hongyun Jin, Hao Wang, Zhen Li. Surface-enhanced Raman scattering and photocurrent multiplication phenomenon of ZnO/Ag nanoarrays. Materials Letters, 2013, 94: 19-22. (IF: 2.437, T2)
[10] Xueqin Liu, Zhen Li, Qiang Zhang, Fei Li, Tao Kong. Preparation of CuO/C core-shell nanowires and its application in lithium ion batteries. Materials Letters, 2012, 80: 37-39. (IF: 2.437, T2)
[11] Xueqin Liu, Zhen Li, Qiang Zhang, Fei Li, Tao Kong. CuO nanowires prepared via a facile solution route and their photocatalytic property. Materials Letters, 2012, 72: 49-52. (IF: 2.437, T2)
[12] Xueqin Liu, Zhen Li, Fei Li, Qiang Zhang. Facile synthesis of Cu31S16 and their photocatalytic property. Applied Surface Science, 2012, 258(16): 6064-6068. (IF:2.711,T3)   
[13] Xueqin Liu, Zhen Li, Fei Li, Qinghua Qin. Controllable synthesis and characterization of Ag@AgBr core–shell nanowires, Materials Research Bulletin, 2012, 47(5):1285-1288. (IF:2.288, T3)
[14] Xueqin Liu, Zhen Li, Qiang Zhang, Fei Li. Controllable synthesis and enhanced photocatalytic
properties of Cu2O/Cu31S16 composites. Materials Research Bulletin, 2012, 47(9):2631-2637. (IF:2.288, T3)
[15] Fei Li, Xueqing Liu, Qiang Zhang, Tao Kong, Hongyun Jin. Fabrication and photocatalytic property of CuO nanosheets via a facile solution route. Crystal Research and Technology, 2012, 11: 1140-1147. (IF:0.935, T4)
[16] Fei Li, Xueqin Liu, Yuliang Yuan, Jianfang Wu, Zhen Li. Controllable synthesis, characterization and optical properties of Ag@AgCl coaxial core-shell nanocables, Crystal Research and Technology, 2011, 45(11): 118-1193. (IF:0.935, T4)
[17] Fei Li, Xueqin Liu, Tao Kong, Zhen Li and Xintang Huang. Conversion from ZnO nanospindles into ZnO/ZnS core/shell composites and ZnS microspindles, Crystal Research and Technology, 2009, 44(4): 402-408. (IF:0.935, T4)
[18] Fei Li, Xueqin Liu, Qinghua Qin, Jianfang Wu, Zhen Li and Xintang Huang. Sonochemical synthesis and characterization of ZnO nanorod/Ag nanoparticle composites, Crystal Research and Technology, 2009, 44(11): 1249-1254. (IF:0.935, T4)
[19] Yang Wang, Zhen Li, Yunfeng Tian, Wen Zhao, Xueqin Liu, Jianbo Yang. Facile method for fabricating silver-doped TiO2 nanotube arrays with enhanced photoelectrochemical property. Materials Letters, 2014, 122: 248-251. (IF:2.489, T2)
[20] Yang Wang, Zhen Li, Yunfeng Tian, Wen Zhao, Xueqin Liu, Jianbo Yang. A facile way to fabricate graphene sheets on TiO2 nanotube arrays for dye-sensitized solar cell applications. Journal of Materials Science, 2014, 49:7991-7999. (IF:2.371, T3)
[21] Yang Wang, Zhen Li, Yuan He, Fei Li, Xueqin Liu, Jianbo Yang. Low-temperature solvothermal synthesis of graphene–TiO2 nanocomposite and its photocatalytic activity for dye degradation. Materials Letters, 2014, 134:115-118. (IF:2.489, T2)
[22] Jianbo Yang, Zhen Li, Wen Zhao, Caixin Zhao, Yang Wang, Xueqin Liu. Controllable synthesis of Ag-CuO composite nanosheets with enhanced photocatalytic property. Materials Letters 2014, 120:16-19. (IF:2.489, T2)
[23] Jianbo Yang, Zhen Li, Caixin Zhao, Yang Wang, Xueqin Liu. Facile synthesis of Ag-Cu2O composites with enhanced photocatalytic activity. Materials Research Bulletin 2014, 60:530-536. (IF:2.288, T3)
[24] Yongqian Wang, Dawei Meng, Xueqin Liu and Fei Li. Facile synthesis and characterization of
hierarchical CuO nanoarchitectures by a simple solution route, Crystal Research and Technology, 2009, 44(12): 1277-1283. (IF:0.935, T4)
[25] Fei Li, Xintang Huang, Tao Kong, Xueqin Liu, Qinghua Qin, Zhen Li. Synthesis and characterization of PbS crystals via a solvothermal route, Journal of Alloys and Compounds, 2009, 485(1-2): 554-560. (IF:2.999, T2)
[26] Yang Wang, Zhen Li, Fei Li, Yunfeng Tian, Wen Zhao, Xueqin Liu, Jianbo Yang. A Novel Method for the Preparation of CdS Quantum Dots Sensitized Solar Cells Based on Free-Standing and Through-Hole TiO2 Nanotube Arrays, Journal of Nanoscience and Nanotechnology, 2016, 6(16):6086-6092. (IF:1.556, T3)
[27] M. Ye, Xueqin. Liu, J. Iocozzia, X. Liu, and Z. Lin. "Nanostructured Materials for High Efficiency Perovskite Solar Cells" in the book entitled "Nanomaterials for Sustainable Energy", Springer Ed. (USA) (2016).

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