基本信息
刘向峰 男 博导 材料科学与光电技术学院
电子邮件:liuxf@ucas.ac.cn
通信地址:北京市玉泉路19号甲
邮政编码:100049
办公电话:**
办公地址:国科大材料科学与光电技术学院科研楼208#
研究领域1. 新能源材料(锂离子电池、锂空气电池、钠离子电池、储氢材料等)。
2. 纳米结构材料的可控制备及其在新能源、生物医学及环境科学领域中的应用。
3. 中子散射技术在材料表征中的应用。
招生信息
招生专业 材料学
招生方向 新型能量存储与转换材料,纳米生物医用材料
中子散射技术的应用
教育背景 2003-09--2006-06 中国科学院研究生院 博士学位
2000-09--2003-07 青岛科技大学 硕士学位
1994-09--1998-07 青岛科技大学 学士学位
工作经历2012.03 至今 中国科学院大学(原中科院研究生院)材料科学与光电技术学院教授、博士生导师.
2009.03-2012.02 美国密苏里大学圣路易斯分校纳米科学中心、物理与天文学系先后任博士后研究员、研究助理教授.
2008.01-2009.02 加拿大 University of New Brunswick 化学系博士后研究员.
2006.06-2007.12 日本产业技术综合研究所(AIST)能源技术研究部任特别研究员.
1998.08-2000.08 青岛海信集团工作,先后任技术员、技术室主任.
专利与奖励5. 入选中国科学院“引进国外杰出人才计划”(“百人计划”A类) (2012),并获得择优支持(2013).
4. 荣获中国科学院院长奖. (2006)
3. 研究成果曾被CBC(加拿大电视台)新闻频道专门报道 (2008.10.29).
2. 研究成果在美国能源部项目总结报告中被评为研究亮点。(2010)
1. 在青岛海信集团工作期间, 完成公司两项“创新创效”成果,并荣获公司“青年岗位能手”、“技术岗位标兵”等称号 (1998-2000).
出版信息2015
57. Rui Gao, Lei Liu, Zhongbo Hu, Peng Zhang, Xingzhong Cao, Baoyi Wang, Xiangfeng Liu. The Role of Oxygen Vacancies in Improving the Performance of CoO as a Bifunctional Cathode Catalyst for Rechargeable Li-O2 Batteries. J. Mater. Chem. A, 2015, 3, 17598–17605.
56. Zheng-Yao Li, Rui Gao, Limei Sun, Zhongbo Hu and Xiangfeng Liu. Designing an advanced P2-Na0.67Mn0.65Ni0.2Co0.15O2 layered cathode material for Na-ion batteries. J. Mater. Chem. A, 2015,3, 16272-16278.
55. Xiaopeng Zheng, Junxin Shi, Yang Bu, Gan Tian, Xiao Zhang, Wenyan Yin, Bifen Gao, Zhi-Yong Yang, Zhongbo Hu, Xiangfeng Liu, Liang YAN, Zhanjun Gu and Yuliang Zhao. Silica-coated bismuth sulfide nanorods as multimodal contrast agents for non-invasive visualization of gastrointestinal tract. Nanoscale, 2015,7, 12581-12591.
54. Enyue Zhao, Xiangfeng Liu Zhongbo Hu, Limei Sun, Xiaoling Xiao, Facile synthesis and enhanced electrochemical performances of Li2TiO3-coated Li-rich layered Li1.13Ni0.30Mn0.57O2 cathode materials for lithium-ion batteries, Journal of Power Sources, 2015,294,141-149.
53. 刘 景,冯建涛,崔岩岩,胡中波,韩 东,刘向峰. 弹性微柱阵列基底影响肿瘤细胞黏附状态及相关生物力药理学研究[J]. 电子显微学报, 2015, 34(4),332-337.
52.Chunfang Zhang, Zhongbo Hu, Li Song, Yanyan Cui, and Xiangfeng Liu. Valine-derived carbon dots with colour-tunable fluorescence for the detection of Hg2+ with high sensitivity and selectivity.New J. Chem., 2015,39, 6201-6206.
51. Hongbin Feng, Zhongbo Hu, and Xiangfeng Liu. Facile and efficient exfoliation of inorganic layered materials using liquid alkali metal alloys. Chem. Commun. 2015,51, 10961-10964.
50. Yanyan Cui, Chunfang Zhang, Limei Sun, Zhongbo Hu,and Xiangfeng Liu. Simple and Efficient Synthesis of Strongly Green Fluorescent Carbon Dots with Upconversion Property for Direct Cell Imaging. Part. Part. Syst. Charact. 2015, 32, 542–546.
49. Enyue Zhao, Xiangfeng Liu, Hu Zhao, Xiaoling Xiao and Zhongbo Hu,Ionic Conductivity Li2SiO3 Coating Lithium-rich Layered Oxides Exhibiting High Rate Capability and Low Polarization, Chem. Commun., 2015, 51, 9093-9096.
48. Xiuling Zhang, Zhongbo Hu, Xiaoling Xiao, Limei Sun , Songbai Han, Dongfeng Chen, Xiangfeng Liu. Fe3O4@porous carbon hybrid as anode materials for lithium-ion battery: Performances optimization by composition and microstructure tailoring. New Journal of Chemistry, 2015, 39, 3435 – 3443.
47. Lei Liu, Zhongbo Hu, Limei Sun, Rui Gao, and Xiangfeng Liu. Controlled Synthesis and Enhanced Electrochemical Performances of Prussian Blue Analogue-derived Hollow FeCo2O4 Nanospheres as Lithium-ion Battery Anodes. RSC Adv., 2015, 5, 36575–36581
46. Zhongxiao Liu, Limei Sun, Wenyun Yang, Jinbo Yang, Songbai Han, Dongfeng Chen, Yuntao Liu, Xiangfeng Liu. The synergic effects of Na and K co-doping on the crystal structure and electrochemical properties of Li4Ti5O12 as anode material for lithium ion battery. Solid State Sciences.2015, 44, 39-44.
45. Enyue Zhao, Zhongbo Hu, Lei Xie, Xiping Chen, Xiaoling Xiao and Xiangfeng Liu, The studying of the structure-activity relationship of electrochemical performance and Li/Ni mixing of lithium-rich materials by neutron diffraction, RSC Adv., 2015,5, 31238-31244
44. Rui Gao, Jinzhen Zhu, Xiaoling Xiao, Zhongbo Hu, Jianjun Liu, Xiangfeng Liu. Facet-Dependent Electrocatalytic Performance of Co3O4 for Rechargeable Li?O2 Battery. J. Phys. Chem. C 2015, 119, 4516?4523.
43. Yanyan Cui, Chunfang Zhang, Limei Sun, Zhongbo Hu, and Xiangfeng Liu. Direct Synthesis of CdS Nanodots Embedded in Bovine Serum Albumin without External Sulfur Source for Cell Imaging. RSC Advances, 2015, 5, 10014–10017.
42. Hu Zhao, Lei Liu, Xiaoling Xiao, Zhongbo Hu, Songbai Han, Yuntao Liu, Dongfeng Chen, Xiangfeng Liu. The effects of Co doping on the crystal structure and electrochemical performance of Mg(Mn2-xCox)O4 negative materials for lithium ion battery. Solid State Sciences. 2015,39, 23-28.
2014 (8)
41.Xiangfeng Liu, David Peaslee, T. Patrick Sheehan, and Eric H. Majzoub. Decomposition Behavior of Eutectic LiBH4-Mg(BH4)2 and Its Confinement Effects in Ordered Nanoporous Carbon. J. Phys. Chem. C. 2014, 118, 27265?27271
40. Hu Zhao, Zhongbo Hu, Xiaoling Xiao, XiangfengLiu. Hydrothermal Synthesis and Electrochemical Performance of LiNi0.5Mn0.5O2 as Lithium-ion Battery Cathode. Applied Mechanics and Materials. 2014, 672-674, 638-645.
39. Limei Sun, Songbai Han, Yuntao Liu, Dongfeng Chen, Xiangfeng Liu. The Crystal Structure and Magnetic Property of Bi-Substituted Nd2Fe17-x-yTixSiy Intermetallic Compounds. Applied Mechanics and Materials. 2014, 644-650, 4950-4955.
38. Limei Sun, Songbai Han, Yuntao Liu, Dongfeng Chen, Zhongbo Hu, Xiangfeng Liu. Influence of Y and Al co-doping on the crystal structure and magnetic properties of Nd2-xYxFe17-yAly. Intermetallics, 2014, 55, 199-203.
37. Yanyan Cui, Zhongbo Hu, Chunfang Zhang and Xiangfeng Liu. Simultaneously enhancing up-conversion fluorescence and red-shifting down-conversion luminescence of carbon dots by a simple hydrothermal process. J. Mater. Chem. B, 2014, 2, 6947–6952
36. Lei Liu, Limei Sun, Jing Liu, Xiaoling Xiao, Zhongbo Hu, Xingzhong Cao, Baoyi Wang, Xiangfeng Liu. Enhancing the electrochemical properties of NiFe2O4 anode for lithium ion battery through a simple hydrogenation modification. International Journal of Hydrogen Energy. 2014,39,11258-11266.
35. Stephen D. House, Xiangfeng Liu, Angus A. Rockett, Eric H. Majzoub, and Ian M. Robertson. Characterization of the Dehydrogenation Process of LiBH4 Confined in Nanoporous Carbon. J. Phys. Chem. C 2014, 118, 8843?8851.
34. Li Xue, Yingzhi Cheng, Xiuyu Sun, Ziyan Zhou, Xiaoling Xiao, Zhongbo Hu and Xiangfeng Liu. The formation mechanism and photocatalytic activity of hierarchical NiAl–LDH films on an Al substrate prepared under acidic conditions. Chem. Commun., 2014, 50, 2301.
2013 (5)
33. Shuai Hao,Xiaoling Xiao, Zhongbo Hu, Limei Sun, Songbai Han, Dongfeng Chen, and Xiangfeng Liu. Improving the Electrochemical Performance of Li4Ti5O12 Anode through Confinement into Ordered Bimodal Porous Carbon Frameworks. J. Phys. Chem. C, 2013, 117,26889-26895.
32. Nina Verdal, Terrence J. Udovic, John J. Rush, Xiangfeng Liu, Eric H. Majzoub, John J. Vajo, and Adam F. Gross. Dynamical Perturbations of Tetrahydroborate Anions in LiBH4 due to Nanoconfinement in Controlled-pore Carbon Scaffolds. J. Phys. Chem. C 2013, 117, 17983?17995.
31. Xiangfeng Liu, E. H. Majzoub, V. Stavila, R. K. Bhakta, M.D. Allendorf, D.T .Shane, M. S Conradi, N. Verdal, T. J. Udovic, S. J. Hwang. Probing the Unusual Anion Mobility of LiBH4 Confined in Highly Ordered Nanoporous Carbon Frameworks via Solid State NMR and Quasielastic Neutron Scattering. J. Mater. Chem. A, 2013, 1, 9935-9941
30. Xiangfeng Liu, David Peasleea and E. H. Majzoub. Tailoring the hydrogen storage properties of Li4BN3H10 by confinement into highly ordered nanoporous carbon. J. Mater. Chem. A, 2013, 1, 3926–3931
29. Ying Zhi Cheng, Xiao Ling Xiao, Xiang Feng Liu, Mei Mei Wu, Jie Peng, Zhong Bo Hu, Study of the Structures and Thermal Expansion Properties of Solid Solutions Yb2?xDyxW3O12 (0≤x≤1.5 and 1.8≤x≤2.0), Physica B 2013, 411:173–177.
2012 (3)
28. Xiaoling Xiao, Xiangfeng Liu, Hu Zhao, Dongfeng Chen, Fengzhen Liu, Junhui Xiang, Zhongbo Hu, and Yadong Li. Facile Shape-control of Co3O4 and The Crystal Plane Effect on Electrochemical Performance, Advanced Materials, 2012, 24, 5762-5766.
27. Xiaoling Xiao, Xiangfeng Liu, Li Wang, Hu Zhao, Zhongbo Hu, Xiangming He, and Yadong Li. LiCoO2 Nanoplates with Exposed (001) Planes and High Rate Capability for Lithium-Ion Batteries. Nano Res. 2012, 5, 395-401.
Before UCAS
26. Xiangfeng Liu, Shane D. Beattie, Henrietta W. Langmia, G. Sean McGrady, Craig M. Jensen. Ti-doped LiAlH4 for hydrogen storage: Rehydrogenation process, reaction conditions and microstructure evolution during cycling. International Journal of Hydrogen Energy. 2012, 37, 10215-10221.
25. Xiangfeng Liu, Henrietta W. Langmi, Shane D. Beattie, Felix F. Azenwi, G. Sean McGrady, Craig M. Jensen. Ti-Doped LiAlH4 for Hydrogen Storage: Synthesis, Catalyst Loading and Cycling Performance. J. Am. Chem. Soc. 2011, 133, 15593–15597
24. Tim H. Mason, Xiangfeng Liu, J. Hong, J. Graetz, E.H. Majzoub. First-principles Study of Novel Conversion Reactions for High-capacity Li-ion Battery Anodes in the Li-Mg-B-N-H System. Journal of Physical Chemistry C,2011, 115, 16681–16687
23. Xiangfeng Liu, David Peaslee, Christopher Z. Jost, Eric H. Majzoub and T. Baumann. Systematic Pore-size Effects of Nanoconfinement of LiBH4: Elimination of Diborane Release and Tunable Behavior for Hydrogen Storage Applications. Chemistry of Materials. 2011, 23 (5): 1331-1336.
22. Xiangfeng Liu, David Peaslee, Christopher Z. Jost, and Eric H. Majzoub. Controlling the Decomposition Pathway of LiBH4 via Confinement in Highly Ordered Nanoporous Carbon. Journal of Physical Chemistry C. 2010, 114, 14036–14041
21. Henrietta W. Langmi, G. Sean McGrady, Xiangfeng Liu, Craig M. Jensen. Modification of the H2 Desorption Properties of LiAlH4 through Doping with Ti. Journal of Physical Chemistry C, 2010,114, 10666-10669.
20. Xiangfeng Liu, G. Sean McGrady, Henrietta W. Langmi, and Craig M. Jensen. Facile Cycling of Ti-doped LiAlH4 for High Performance Hydrogen Storage. J. Am. Chem. Soc., 2009, 131,5032-5033.
19. Xiangfeng Liu, Kohta Asano, Naoyoshi Terashita, Etsuo Akiba. Hydrogenation of C14 Laves phase alloy: CaLi2. International Journal of Hydrogen Energy, 2009, 34(3):1472-1475.
18. Xiangfeng Liu, Kohta Asano, Etsuo Akiba. Direct synthesis of BaAlH5 and Ba2AlH7 from BaH2 and Al system and their hydriding/dehydriding characteristics. Journal of Alloys and Compounds, 2009, 477, 744-748.
17. Kohta Asano, Kouji Sakaki, Xiangfeng Liu and Etsuo Akiba. Hydrogenation of CaLi2-xMgx (0 ≤ x ≤ 2) with C14 Laves phase structure. Journal of Alloys and Compounds, 2009, 482, L18–L21.
16. Xiangfeng Liu, Kohta Asano, Kouji Sakaki, Yumiko Nakamura, H. Enoki, Etsuo Akiba. Investigations on the formation and decomposition behaviors of BaAlH5 and Ba2AlH7. Journal of Physical Chemistry C, 2008, 112: 17423-17426.
15. Jianying Lv, Bingwen Yao, Xiangfeng Liu, Songbai Han, and Zhongbo Hu. Structure and magnetic properties of Nd3-xDyxFe23-yCo6Moy (x=0.5-3) compounds. Solid State Sciences, 2008, 10: 1412-1415.
14. Li-mei Sun, Xing-he Fan, Xiao-fang Chen, Xiang-feng Liu, Qi-Feng Zhou. Synthesis and characterization of graft copolymers containing poly( p-phenylene) main chains and mesogen-jacketed liquid crystalline polystyrene side chains. Journal of Polymer Science Part A: Polymer Chemistry, 2007, 45: 2543-2555.
13. S.B. Han, J.Y. Lv, X.F. Liu, J. Peng, D.F. Chen, J.H. Li and Z.B. Hu. Formation, structure and magnetic properties of Nd3?xZrxFe27.8Mo1.2 (0.1 ≤ x ≤ 0.5) compounds. Journal of Alloys and Compounds 431 (1-2): 68-71 (2007).
12. Xiangjun Li, Xiangfeng Liu, Jianying Lv, et al. Crystallographic structure and magnetic properties of NdyDy1-yFe11-xTiCox compounds. Journal of Alloys and Compounds 438: 21-24 (2007)
11. X. F. Liu, J. Y. Lv, Z. B. Hu, S. B. Han, D. F. Chen, Y. J. Xue, J. H. Li, R. Kiyanagi, J. S. Fieramosca, S. Short, and J. Jorgensen. Effects of the substitution of Al for Fe on phase transition, crystal structures, and magnetic properties of Nd3(Fe,Ti)29-type intermetallics. Journal of Applied Physics 100, 103910 (2006)
10. X. F. Liu, J. Y. Lv, S. B. Han, Y. M. Hao, Z. B. Hu, D. F. Chen, Y. J. Xue, and J. H. Li, Cooperative effects of a combined substitution on the magnetic properties of Nd2-xYxFe17-ySiy intermetallic compounds (0≤x≤1.5, 0≤y≤3.0), Journal of Applied Physics, 99, 023904, 2006.
9. S. B. Han, X.F. Liu, J.Y. Lv, J. Peng, Y. M. Hao, D. F. Chen, Y.J. Xue, J.H. Li and Z.B.Hu, Crystallographic and magnetic properties of (Nd,Dy)3Fe27.5(Ti-,Mo)1.5 compounds, Journal of Magnetism and Magnetic Materials, 2006, 301 (2): 415-421.
8. X. F. Liu, D. F. Chen, Y. M. Hao, et al. Investigations on the structural and magnetic properties of doubly substituted Nd2Fe17-x-yTixGay compounds (0 ≤ x ≤1.0, 0 ≤ y ≤ 3). Journal of Alloys and Compounds, 2006, 407: 58-64
7. X.F. Liu, S.B. Han, J.Y. Lv, X.J. Li, Z.B. Hu, D.F. Chen, Y.J. Xue and J.H. Li, The effects of the combined substitution of Y and Ga on the crystallographic structure of Nd2?xYxFe17?yGay intermetallic compounds, Journal of Alloys and Compounds, 2005,400: 178-183
6. S. B. Han, J Y Lv, X F Liu, J Peng, X J Li, D F Chen, Y J Xue, J H Li and Z B Hu, Effect of Zr addition on the formation and structural properties of (3:29) compounds in the Fe-Nd-Ti-Zr system, J. Phys.: Condens. Matter. 17 (2005) 6007-6014.
5. J. Y. Lv, S. B. Han, X. F. Liu, X. J. Li, Z.B.Hu, J. H. Li, Y. J. Xue and D. F. Chen, Structure analysis of Nd3-xYxFe23-yCo6Moy (x=0.36-3.0; y=1.1,0.9) compounds, Journal of Applied Physics, 98,33903 (2005).
4. S. B. Han, J. Y. Lv, X. F. Liu, et al. Synthesis and structural properties of Nd3-xYxFe27.5Ti0.8Mo0.4 (0 ≤ x ≤ 1.8) and Nd3-x’Yx’ Fe27.8Mo1.2(0 ≤ x’ ≤ 2.8) intermetallic compounds. Journal of Alloys and Compounds, 2005, 403 (1-2): 168-175
3. S. B. Han, J. Y. Lv, X. F. Liu, et al. Effects of substitution of Dy for Nd on the structural and magnetic properties of Nd3-xDyxFe27.5Mo1.5 (0.3 ≤ x ≤ 1.8) PHYSICA B-CONDENSED MATTER 2005, 367 (1-4): 275-281
2. J. Y. Lv, X. F. Liu, S. B. Han, et al. Structure and magnetic properties of (Nd,Y)(3)(Fe,Co,Ti)(29) compounds. PHYSICA B-CONDENSED MATTER 2005, 369 (1-4): 266-272.
1. X. F. Liu, J. Y. Lv, S. B. Han, J. Peng, H. Wang, Z. B. Hu, D. F. Chen, Y. J. Xue, and J. H. Li, Effects of double substitution on the magnetic properties of Nd2Fe17-x-yTixAly: A combined investigation of x-ray diffraction, neutron diffraction and magnetic measurement, Journal of Applied Physics, 98, 013537, 2005.
发表著作
已毕业学生刘磊 材料学专业 2012.09-2015.07 博士研究生 现浙江大学
赵虎 材料学专业 2012.09-2015.07 博士研究生 现中科院宁波材料所
刘景 材料学专业 2012.09-2015.07 硕士研究生 现中国科学院大学
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中国科学院大学研究生导师简介-刘向峰
中国科学院大学 免费考研网/2016-05-09
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