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吴昊
发布人:admin_cv 发布时间:2017-03-08 浏览次数:1469次

个人简历:

吴昊,男,1981年生,四川大学材料学院新能源系引进人才,特聘副研究员,硕士生导师,全国百篇优秀博士论文获得者。2010年获四川大学皮革科学与工程专业工学博士学位;2010年~2011年在四川大学高分子科学与工程学院博士后工作站工作,2011年~2013年澳大利亚昆士兰大学化工学院 “Clean Energy and Water Research”博士后。

主要从事纳米材料在能源、化工、环境等领域的应用;特别是近几年在新型锂离子电池电极材料、多孔碳材料、负载型纳米多相催化剂等领域进行研究工作;先后承担和参与多项国家与省部级科研项目,包括国家“863”项目、国家自然科学基金、教育部优秀博士论文专项基金、四川大学优秀青年基金、四川省重点攻关项目、校企合作课题项目等。已在国际知名化学及材料学术期刊如Advanced Functional Materials, Green Chemistry, Journal of Materials Chemistry A, Journal of Power Sources, ACS Applied Materials & Interfaces等发表学术论文30余篇。论文被国际国内同行引用400 多次,h-index 影响因子11.0。

 

研究方向:

1、锂二次电池电极材料

2、碳基新型储能材料

3、石墨烯功能材料

 

联系方式:

地 址: 四川省成都市望江路29号四川大学材料科学与工程学院 610064。

电 话: 028-85410272(O)

E-mail :hao.wu@scu.edu.cn; shiony@126.com

封面论文:

 

近年来代表性论文:

2016

(29) Nitrogen-Doped Graphene Ribbon-Assembled Core-Sheath MnO@Graphene Scrolls as Hierarchically Ordered 3D Porous Electrodes for Fast and Durable Lithium Storage. Y. Zhang, P. H. Chen, X. Gao, B. Wang, H. Liu, H. Wu* H. K. Liu, S. X. Dou, Advanced Functional Materials In press, 2016. (SCI, IF=11.8), Highlighted as Front Cover.

(28) Template-Engaged Synthesis of 1D Hierarchical Chainlike LiCoO2 Cathode Materials with Enhanced High-Voltage Lithium Storage Capabilities. N. T. Wu, Y. Zhang*, Y. H. Wei, H. Liu, H. Wu*, ACS Applied Materials & Interfaces In press, 2016. (SCI, IF=7.145)

(27) Enhanced electrochemical performance of Li-rich Li1.2Mn0.52Co0.08Ni0.2O2 cathode materials for Li-ion batteries by vanadium doping. C. Lu, S. Q. Yang, H. Wu*, Y. Zhang*, X. J. Yang, T. H. Liang, Electrochimica Acta 209, 448-455, 2016. (SCI, IF=4.803)

 


 

(26) Synthesis of Li2 Si2O5-coated LiNi0.6Co0.2 Mn0.2 O2 cathode materials with enhanced high-voltage electrochemical properties for lithium-ion batteries. S. J Liu, H. Wu, L. Huang, M. W. Xiang, H. Liu, Y. Zhang*, Journal of Alloys and Compounds 674, 447-454, 2016. (SCI, IF=3.014)

(25) Template synthesis and lithium storage performances of hollow spherical LiMn2O4 cathode materials. P. H. Chen, H. Wu, S. S. Huang, Y. Zhang*, Ceramics International  42, 10498-10505, 2016. (SCI, IF=2.758)

 


 

(24) Flake-like LiCoO2 with exposed {010} facets as a stable cathode material for highly reversible lithium storage. N. T. Wu, Y. Zhang*, Y. Guo, S. J. Liu, H. Liu, H. Wu*ACS Applied Materials & Interfaces 8, 2723-2731, 2016. (SCI, IF=7.145)

 


 

(23) Hierarchical carambola-like Li4Ti5O12-TiO2 composites as advanced anode materials for lithium-ion batteries. Y. Zhang, Y. Zhang*, L. Huang, Z. F. Zhou, J. F. Wang, H. Liu, H. Wu*, Electrochimica Acta 195, 124-133, 2016. (SCI, IF=4.803)

 


 

(22) Solvothermal coating LiNi0.8Co0.15Al0.05O2 microspheres with nanoscale Li2TiO3 shell for long lifespan Li-ion battery cathode materials. N. T Wu, H. Wu, H. Liu, Y. Zhang*, Journal of Alloys and Compounds 665, 48-56, 2016. (SCI, IF=3.014)

2015

(21) Fabrication of Li+-Conductive Li2ZrO3-Based Shell Encapsulated LiNi0.5Co0.2Mn0.3O2 Microspheres as High-Rate and Long-Life Cathode Materials for Li-Ion Batteries. H. Wu, Z.Y. Wang, S. J. Liu, L. Zhang, Y. Zhang*, ChemElectroChem 2, 1921-1928, 2015. (SCI, IF=3.506) Highlighted as Front Cover

 


 

(20) Facile synthesis of one-dimensional LiNi0.8Co0.15Al0.05O2 microrods as advanced cathode materials for lithium ion batteries. N. T Wu, H. Wu*, W. Yuan, S. J. Liu, J. Y. Liao, Y. Zhang*, Journal of Materials Chemistry A 3, 13648–13652, 2015. (SCI, IF=8.262; Cited 9 times) Selected as one of Top 15 Downloaded articles in June and July, 2015

 


 

(19) Facile pH-mediated synthesis of morphologytunable MnCO3 and their transformation to truncated octahedral spinel LiMn2O4 cathode materials for superior lithium storage. S. S. Huang, H. Wu*, P. H Chen, Y. Guo, B. Nie, B. J. Chen, H. Liu, Y. Zhang*, Journal of Materials Chemistry A 3, 3633-3640, 2015. (SCI, IF=8.262; Cited 7 times)

 


 

(18) Improving the electrochemical properties of Li1.2Mn0.52Co0.08Ni0.2O2 cathode material by uniform surface nanocoating with samarium fluoride through depositional-hydrothermal route. C. Lu, H. Wu*, B. J. Chen, H. Liu, Y. Zhang*, Journal of Alloys and Compounds 634, 75-82, 2015. (SCI, IF=3.014; Cited 3 times)

(17) Cooperative enhancement of electrochemical properties in double carbon-decorated Li4Ti5O12/C composite as anode for Li-ion batteries. F. F Li, P. H. Chen, H. Wu*, Y. Zhang*, Journal of Alloys and Compounds 633, 443-447, 2015. (SCI, IF=3.014; Cited 5 times)

 


 

(16) Influence of multistep sintering method on electrochemical performances of 7LiFePOLi3V2(PO4)3/C composite cathode material for lithium ion batteries. J. Z. Zhou, H. Wu, Y. Zhang*, H. Liu, B.J. Chen, Journal of Solid State Electrochemistry 19, 477-484, 2015. (SCI, IF=2.327; Cited 1 times)

(15) Stabilization of silicon nanoparticles in graphene aerogel framework for lithium ion storage. B. H. Xu, H. Wu, C. X. Lin, B. Wang, Z. Zhang, X. S. Zhao*, RSC Advances 5, 30624-30630, 2015. (SCI, IF=3.289; Cited 3 times)

 

2014

(14) Infiltrative coating of LiNi0.5Co0.2Mn0.3O2 microspheres with layer-structured LiTiO2: Toward superior cycling performances for Li-ion batteries. Z. Y. Wang, S. S Huang, B. J. Chen, H. Wu*, Y. Zhang*, Journal of Materials Chemistry A 2, 19983-19987, 2014. (SCI, IF=8.262; Cited 18 times)

(13) Cerium fluoride coated layered oxide Li1.2Mn0.54Ni0.13Co0.13O2 as cathode materials with improved electrochemical performance for lithium ion batteries. C. Lu, H. Wu*, Y. Zhang*, H. Liu, B. J. Chen, N. T. Wu, S. Wang, Journal of Power Sources 267, 682-691, 2014. (SCI, IF=6.333; Cited 35 times) Awarded by the ESI as a Highly Cited paper

 


 

(12) The electrocapacitive properties of hierarchical porous reduced graphene oxide templated by hydrophobic CaCO3 spheres. Y. Gu, H. Wu, Z. G. Xiong, X. S. Zhao*, Journal of Materials Chemistry A 2, 451-459, 2014. (SCI, IF=8.262; Cited 22 times)

 


 

(11) Synthesis of TiO2 with controllable ratio of anatase to rutile. Z. G Xiong, H. Wu, L. H. Zhang, X. S. Zhao*, Journal of Materials Chemistry A 2, 9291-9297, 2014. (SCI, IF=8.262; Cited 13 times)

 

 


 

2013年前代表性论文

(10) Antibacterial activity of silver nanoparticles stabilized on tannin-grafted collagen fiber. L. H, S. Y. Gao, H. Wu, X. P. Liao, B. Shi*, Materials Science and Engineering C 32, 1050-1056, 2012. (SCI, IF=3.42; Cited 13 times)

(9) Facile Synthesis of Size-Controlled Silver Nanoparticles Using Plant Tannin Grafted Collagen Fiber As Reductant and Stabilizer for Microwave Absorption Application in the Whole Ku Band. J. L. Guo, H. Wu, X.P. Liao, B. Shi*, Journal of Physical Chemistry C. 115, 23688-23694, 2011. (SCI, IF=4.509; Cited 23 times)

(8) Polyphenol-grafted collagen fiber as reductant and stabilizer for one-step synthesis of size-controlled gold nanoparticles and their catalytic application to 4-nitrophenol reduction. H. Wu, X. Huang, M. M. Gao, X. P. Liao, B. Shi*, Green Chemistry 13, 651-658, 2011. (SCI, IF=8.506; Cited 61 times)

(7) One-step room-temperature synthesis of Au@Pd core-shell nanoparticles with tunable structure using plant tannin as reductant and stabilizer. X. Huang, H. Wu, S. Z. Pu, X. P. Liao, B. Shi*, Green Chemistry 13, 950-957, 2011. (SCI, IF=8.506; Cited 39 times)

(6) One-step in situ assembly of size-controlled silver nanoparticles on polyphenol-grafted collagen fiber with enhanced antibacterial properties. H. Wu, L. He, M. M. Gao, X. P. Liao, B. Shi*, New Journal of Chemistry 35, 2902-2909, 2011. (SCI, IF=3.277; Cited 8 times)

(5) Collagen fiber with surface-grafted polyphenol as a novel support for Pd(0) nanoparticles: Synthesis, characterization and catalytic application. H. Wu, C. Wu, Q. He, X. P. Liao, B. Shi*, Materials Science and Engineering C 30, 770-776, 2010. (SCI, IF=3.42; Cited 22 times)

(4) One-step, size-controlled synthesis of gold nanoparticles at room temperature using plant tannin. X. Huang, H. Wu, X. P. Liao, B. Shi*, Green Chemistry 12, 395-399, 2010. (SCI, IF=8.506; Cited 78 times)

(3) Heterogeneous hydrogenation of nitrobenzenes over recyclable Pd(0) nanoparticle catalysts stabilized by polyphenol-grafted collagen fibers. H. Wu, X. P. L. M. Zhuo, Q. He, Liao, B. Shi*, Applied Catalysis A: General 366, 44-56, 2009. (SCI, IF=4.012; Cited 46 times)

(2) Highly stable Pt nanoparticle catalyst supported by polyphenol-grafted collagen fiber and its catalytic application in the hydrogenation of olefins. H. Wu, R. Tang, Q. He, X. P. Liao, B. Shi*, Journal of Chemical Technology and Biotechnology 84, 1702-1711, 2009. (SCI, IF=2.738; Cited 10 times)

(1) Synthesis of unique mesoporous ZrO2-carbon fiber from collagen fiber. D. H. Deng, H. Wu, X. P. Liao, B. Shi*, Microporous and Mesoporous Materials 116, 705-709, 2008. (SCI, IF=3.349; Cited 15 times)

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