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个人简介

教育经历: 1994.09-1998.08 原吉林工业大学材料科学与工程学院焊接工艺及设备专业 获学士学位 学士 1999.09-2002.03 吉林大学材料科学与工程学院 材料加工工程专业 获硕士学位 硕士 2002.04-2004.12 吉林大学材料科学与工程学院 材料加工工程专业 获博士学位 博士 工作经历: 教授、博导。吉林省高级专家、长白山学者特聘教授、新世纪优秀人才、全国优秀博士学位论文获得者。先后承担国家自然科学基金项目、国家“863”计划、国家“973”课题(子项)、国家十二五支撑计划专题等国家级和部省级项目15项。作为主要获奖人,获国家技术发明二等奖和吉林省一等奖;已授权发明专利15项。发表SCI论文107篇,被SCI他引849次,H因子20。指导学生获中国青少年科技创新奖、全国大学生挑战杯赛二等奖;获吉林省优秀硕士学位论文2篇;7名毕业硕士生在美国、挪威、德国、荷兰等继续攻读博士。

研究领域

强韧化与塑性变形;新型能源电池;晶体合成及形貌调控;第一性原理

近期论文

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2014年 [1] H.Y. Wang, B.Y. Wang, J.K. Meng, J.G. Wang*, Q.C. Jiang, “One-step synthesis of Co-doped Zn2SnO4-graphene-carbon nanocomposites with improved lithium storage performances”, Journal of Materials Chemistry A, 3 (2015) 1023–1030. [2] B.Y. Wang, H.Y. Wang, Y.L. Ma, X.H. Zhao, W. Qi, Q.C. Jiang, “Facile synthesis offine Zn2SnO4 nanoparticles/graphene composites with superior lithium storage performance”, Journal of Power Sources 281 (2015) 341-349. [3] X.L. Nan, H.Y. Wang*, J. Rong, E.S. Xue, G.J. Liu, Q.C. Jiang, “Tensile deformation behaviors in a fine-grained, rolled Mg–3Al–3Sn alloy at room temperature up to 250 oC”, Advanced Engineering Materials, 2015, in press. [4] D. Luo, C.H. Pei, J. Rong, H.Y. Wang*, Q. Li, Q.C. Jiang, “Microstructure and mechanical properties of SiC particles reinforced Mg–8Al–1Sn magnesium matrix composites fabricated by powder metallurgy”, Powder Metallurgy, 2015, In press. [5] X.Z. Ma, B. Jin, H.Y. Wang, J.Z. Hou, X.B. Zhong, H.H. Wang, P.M. Xin, “S–TiO2 composite cathode materials for lithium/sulfur batteries”, Journal of Electroanalytical Chemistry 736 (2015) 127–131. [6] Z.Z. Yang, H.Y. Wang,* X.B. Zhong, W. Qi., B.Y. Wang, Q.C. Jiang, “Assembling sulfur spheres on carbon fiber with graphene coated hybrid bulk electrodes for lithium sulfur batteries”, RSC Advance, 4 (2014) 50964–50968. [7] X.B. Zhong, B. Jin*, Z.Z. Yang, C. Wang, H.Y. Wang*, “Facile shape design and fabrication of ZnFe2O4 as an anode material for Li-ion batteries”, RSC Adv. 4 (2014) 55173–55178. [8] L. Chen, H.Y. Wang*, Y.J. Li, M. Zha, Q.C. Jiang, “Morphology and size control of octahedral and cubic primary Mg2Si in Mg–Si system by regulating Sr contents”, CrystEngComm, 16 (2014) 448–454. [9] L. Zhang, C.G. Liu, H.Y. Wang*, X.L. Nan, G.J. Liu, Q.C. Jiang, “Slip-induced texture evolution of rolled Mg–6Al–3Sn alloy during uniaxial tension along rolling and transverse directions”, Materials Science and Engineering A, 597(2014)376–380. [10] D. Luo, H.Y. Wang*, Z.T. Ouyang, L. Chen, J.G. Wang, Q.C. Jiang, “Microstructure and mechanical properties of Mg–5Sn alloy fabricated by a centrifugal casting method”, Materials Letters, 116 (2014)108–111. [11] D. Luo, N. Xia, H.Y. Wang*, L. Chen, J.G. Wang, Q.C. Jiang, “Microstructure and tensile properties of a new type of hot-rolled Mg–3Sn–1Zn alloy sheet at elevated temperatures”, Materials Science and Technology, 30 (2014) 1305-1308 2013年 [1] L. Chen, H.Y. Wang*, D. Luo, H.Y. Zhang, B. Liu, Q.C. Jiang, “Synthesis of octahedron and truncated octahedron primary Mg2Si by controlling the Sb contents”, CrystEngComm, 15(2013) 1787–1793. [2] C. Wang, H.Y. Zhang, H.Y. Wang*, G.J. Liu, Q.C. Jiang, “Effects of doping atoms on generalized-stacking-fault (GSF) energies of Mg from first-principles calculations”, Scripta Materialia, 69 (2013) 445–448. [3] H.Y. Wang, E.S. Xue, X.L. Nan, T. Yue, Y.P. Wang, Q.C. Jiang*, “Influence of grain size on strain rate sensitivity in rolled Mg–3Al–3Sn alloy at room temperature”, Scripta Materialia, 68 (2013) 229–232. [4] X.L. Nan, H.Y. Wang*, Z.Q. Wu, E.S. Xue, L. Zhang, Q.C. Jiang*, “Effect of c/a axial ratio on Schmid factors in hexagonal close-packed metals”, Scripta Materialia, 68 (2013) 530–533 [5] D. Luo, H.Y. Wang*, L. Chen, G.J. Liu, J.G. Wang*, Q.C. Jiang, “Strong strain hardening ability in an as-cast Mg–3Sn–1Zn alloy”, Materials Letters 94 (2013) 51–54. [6] H.Y. Zhang, H.Y. Wang*, C. Wang, G.J. Liu, Q.C. Jiang, “First-principles calculations of generalized stacking fault energy in Mg alloys with Sn,Pb and Sn+Pb dopings”, Materials Science and Engineering A584 (2013) 82–87. [7] C. Wang, H.Y. Wang*, H.Y. Zhang, X.L. Nan, E.S. Xue, Q.C. Jiang, “Influence of Al contents on generalized-stacking-fault (GSF) energy in Mg–Al–Zn alloys: First-principles calculations”, Journal of Alloys and Compounds 575 (2013) 423–433. [8] L. Zhang, C.G. Liu, H.Y. Wang*, X.L. Nan, Z.Q. Wu, Q.C. Jiang, “Deformation mechanisms of a rolled Mg-6Al-3Sn alloy during plane strain compression”, Materials Science and Engineering A, 578(2013)362–369. [9] L. Zhang, C.G. Liu, H.Y. Wang*, X.L. Nan, W. Xiao, Q.C. Jiang, “Twinning and mechanical behavior of an extruded Mg–6Al–3Sn alloy with a dual basal texture”, Materials Science and Engineering A, 578 (2013) 14–17. [10] H.Y. Wang, G.Y. Liu, Z.Z. Yang, B.Y. Wang, L. Chen, Q.C. Jiang, “Facile Synthesis of Mesoporous SnO2 Submicrospheres by Microemulsion Approach as High-Capacity Anodes Material for Lithium-Ion Batteries”, International Journal of Electrochemical Science, 8(2013), 8 (2013) 2345–2353. [11] G.Y. Liu, H.Y. Wang, B. Jin, Z.Z. Yang, W. Qi, Y.C. Liu, Q.C. Jiang, “Synthesis and Electrochemical Properties of Mesoporous SnO2/C Composites as Anode Materials for Lithium Ion Batteries”, International Journal of Electrochemical Science, 8(2013), 8 (2013) 4797-4806. [12] H.Y. Wang, S.J. Lü, W. Xiao, G.J. Liu, J.G. Wang, Q.C. Jiang, “Reaction pathway of combustion synthesis of Ti5Si3 in Cu–Ti–Si System”, Journal of the American Ceramic Society, 96(3) (2013) 950-956. [13] G.Y. Liu, H.Y. Wang, G.Q. Liu, Z.Z. Yang, B. Jin, Q.C. Jiang, “Synthesis and electrochemical performance of high-rate dual-phase Li4Ti5O12–TiO2 nanocrystallines for Li-ion batteries”, Electrochimica Acta, 87 (2013) 218–223. [14] B. Jin, A.H. Liu, G.Y. Liu, Z.Z. Yang, X.B. Zhong, X.Z. Ma, M. Yang, H.Y. Wang, “Fe3O4-pyrolytic graphite oxide composite as an anode material for lithium secondary batteries”, Electrochimica Acta 90 (2013) 426–432.

学术兼职

吉林省机械工程学会青年委员会 主任委员 中国材料研究学会青年委员会 理事 为Composites Science and Technology、Composites A、 Journal of Alloys and Compounds、Journal of Materials Science等11家国内外知名期刊审稿人。

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