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河北工业大学材料科学与工程学院导师教师师资介绍简介-郑士建
本站小编 Free考研考试/2020-10-15
郑士建,工学博士
河北工业大学材料科学与工程学院教授、博士生导师
1980年出生于河北省徐水县
2014年入选中科院“****”
2016 中国电子显微镜学会理事;
2016 中国材料研究学会青年工作委员会理事;
2016 中国电子显微镜学会原位电子显微学方法专业委员会副主任。
研究领域:电子显微学,金属结构材料,能源材料
联系方式
电话:**
E-mail:sjzheng@imr.ac.cn
教育和工作经历
1999.09-2003.07 河北工业大学,材料科学与工程学院,学士;
2003.09-2009.06 中国科学院金属研究所,固体原子像研究部,博士;
2009.09-2011.05 日本精细陶瓷研究中心,博士后;
2011.06-2014.09 美国洛斯阿拉莫斯国家实验室,博士后;
2014.09-2019.01 中科院金属研究所,沈阳材料科学国家(联合)实验室,固体原子像研究部,研究员;
2016.04-2019.01 中科院金属研究所/中国科学技术大学材料科学与工程学院,博士生导师;
2019.01-至今 河北工业大学,材料科学与工程学院,教授/博导
研究方向:原子尺度结构与材料性能关系的(原位)透射电子显微学研究,尤其关注材料中界面结构对材料性能的影响,材料体系包含块体纳米层状金属材料,TWIP钢,高熵合金,高温合金、钛合金、镁合金、二维材料、锂离子电池材料等。
主要成果:揭示了纳米颗粒MnCr2O4与MnS界面诱发的不锈钢点蚀形核新机制;建立了块体纳米多层金属复合材料界面结构特性与材料织构演化、变形机理、热稳定性、抗核辐照损伤性能之间的基本关联;揭示了锂离子电池材料在循环充放电过程中的晶界结构演化规律及其与电池容量下降之间的因果关系。已发表Nature、Nature Communications、PNAS、Advanced Materials、Acta Materialia(10篇)等论文71篇,引用2100多次,H因子26。
科研项目:国家自然科学基金青年项目(**),国家自然科学基金面上项目(**),沈阳材料科学国家(联合)实验室基础前沿及共性关键技术创新项目(2015RP18),中科院“****”项目;军工重点研发计划(613286)。
获奖(荣誉)情况
?2018 沈阳市领军人才;
?2016 辽宁省百千****才工程;
?2014 中国科学院沈阳分院优秀青年科技人才奖;
?2013美国洛斯阿拉莫斯国家实验室优秀博士后(3/400);
?2011日本陶瓷协会最佳图片奖;
?2003 河北工业大学优秀毕业论文,工大镀锌奖学金。
发表论文:(#共同一作,*通讯作者)
[1-71]
1.X. Zheng, M. Gong, T. Xiong, H. Ge, L. Yang, Y. Zhou, S. Zheng*, J. Wang, and X. Ma, Deformation induced FCC lamellae and their interaction in commercial pure Ti, Scripta Materialia 162 (2019) 326-330.
2.L. Yang, H. Ge, J. Zhang, T. Xiong, Q. Jin, Y. Zhou, X. Shao, B. Zhang, Z. Zhu, S. Zheng*, and X. Ma, High He-ion irradiation resistance of CrMnFeCoNi high-entropy alloy revealed by comparison study with Ni and 304SS, Journal of Materials Science & Technology 35 (2019) 300-305.
3.S.Y. Wei, L.F. Zhang, S.J. Zheng, X.P. Wang, and J.W. Wang, Deformation-induced interfacial transition zone in Cu/V nanolamellar multilayers, Scripta Materialia 159 (2019) 104-108.
4.H.L. Ge, J.D. Liu, S.J. Zheng*, Y.T. Zhou, Q.Q. Jin, X.H. Shao, B. Zhang, Y.Z. Zhou, and X.L. Ma, Boride-induced dislocation channeling in a single crystal Ni-based superalloy, Materials Letters 235 (2019) 232-235.
5.T. Xiong, S.J. Zheng*, Y.T. Zhou, J.C. Pang, Q.Q. Jin, H.L. Ge, X.D. Zheng, L.X. Yang, I.J. Beyerlein, and X.L. Ma, Enhancing strength and thermal stability of TWIP steels with a heterogeneous structure, Materials Science and Engineering: A 720 (2018) 231-237.
6.M. Ou, Y. Ma, H. Ge, W. Xing, Y. Zhou, S. Zheng, and K. Liu, Microstructure evolution and mechanical properties of a new cast Ni-base superalloy with various Ti contents, Journal of Alloys and Compounds 735 (2018) 193-201.
7.J. Mu, J. Wang, Z. Zhao, Z. Zhu, S. Zheng, Z. Ai, and Y. Wang, Regulating kinetics of deformation-induced phase transformation in amorphous alloy composite via tuning nano-scale compositional heterogeneity in crystalline phase, Intermetallics 93 (2018) 72-76.
8.Y. Lu, H. Huang, X. Gao, C. Ren, J. Gao, H. Zhang, S. Zheng, Q. Jin, Y. Zhao, L. Chenyang, T. Wang, and T. Li, A promising new class of irradiation tolerant materials: Ti2ZrHfV0.5Mo0.2 high-entropy alloy, Journal of Materials Science & Technology (2018).
9.Y. Li, S. Niu, D. Rakov, Y. Wang, M. Cabán-Acevedo, S. Zheng, B. Song, and P. Xu, Metal organic framework-derived CoPS/N-doped carbon for efficient electrocatalytic hydrogen evolution, Nanoscale 10 (2018) 7291-7297.
10.Y. Zhou, S. Zheng, Y. Jiang, T. Zhao, Y. Wang, and X. Ma, Atomic structure of the Fe/Fe3C interface with the Isaichev orientation in pearlite, Philosophical Magazine (2017) 1-12.
11.Y. Zhou, Y. Zan, S. Zheng, Q. Wang, B. Xiao, X. Ma, and Z. Ma, Distribution of the microalloying element Cu in B4C-reinforced 6061Al composites, Journal of Alloys and Compounds 728 (2017) 112-117.
12.L.X. Yang, S.J. Zheng*, Y.T. Zhou, J. Zhang, Y.Q. Wang, C.B. Jiang, N.A. Mara, I.J. Beyerlein, and X.L. Ma, Effects of He radiation on cavity distribution and hardness of bulk nanolayered Cu-Nb composites, Journal of Nuclear Materials 487 (2017) 311-316.
13.S. Pathak, N. Velisavljevic, J.K. Baldwin, M. Jain, S. Zheng, N.A. Mara, and I.J. Beyerlein, Strong, ductile, and thermally stable bcc-Mg Nanolaminates, Scientific Reports 7 (2017) 8264.
14.L. Lin, W. Zhou, R. Gao, S. Yao, X. Zhang, W. Xu, S. Zheng, Z. Jiang, Q. Yu, Y.-W. Li, C. Shi, X.-D. Wen, and D. Ma, Low-temperature hydrogen production from water and methanol using Pt/α-MoC catalysts, Nature 544 (2017) 80-83.
15.M. Jahedi, I.J. Beyerlein, M.H. Paydar, S. Zheng, T. Xiong, and M. Knezevic, Effects of Pressure and Number of Turns on Microstructural Homogeneity Developed in High-Pressure Double Torsion, Metallurgical and Materials Transactions A 48 (2017) 1249-1263.
16.Y.T. Zhou, S.J. Zheng, B. Zhang, and X.L. Ma, Atomic scale understanding of the interaction between alloying copper and MnS inclusions in stainless steels in NaCl electrolyte, Corrosion Science 111 (2016) 414-421.
17.S. Zheng*, R. Zhang, R. Huang, T. Taniguchi, X. Ma, Y. Ikuhara, and I.J. Beyerlein, Structure and energetics of nanotwins in cubic boron nitrides, Applied Physics Letters 109 (2016) 081901.
18.R.F. Zhang, I.J. Beyerlein, S.J. Zheng, S.H. Zhang, A. Stukowski, and T.C. Germann, Manipulating dislocation nucleation and shear resistance of bimetal interfaces by atomic steps, Acta Materialia 113 (2016) 194-205.
19.E. Xu, Z. Li, J.A. Acosta, N. Li, B. Swartzentruber, S. Zheng, N. Sinitsyn, H. Htoon, J. Wang, and S. Zhang, Enhanced thermoelectric properties of topological crystalline insulator PbSnTe nanowires grown by vapor transport, Nano Research 9 (2016) 820-830.
20.X.H. Shao, S.J. Zheng, D. Chen, Q.Q. Jin, Z.Z. Peng, and X.L. Ma, Deformation twinning induced decomposition of lamellar LPSO structure and its re-precipitation in an Mg-Zn-Y alloy, Scientific Reports 6 (2016) 9.
21.Y.Z. Liu, S.J. Zheng*, Y.L. Zhu, H. Wei, and X.L. Ma*, Microstructural evolution at interfaces of thermal barrier coatings during isothermal oxidation, Journal of the European Ceramic Society 36 (2016) 1765-1774.
22.Y.T. Zhou, Y.J. Wang, S.J. Zheng, B. Zhang, and X.L. Ma, Strain-induced preferential dissolution at the dislocation emergences in MnS: an atomic scale study, Philosophical Magazine 95 (2015) 2365-2375.
23.S. Zheng*, S. Shao, J. Zhang, Y. Wang, M.J. Demkowicz, I.J. Beyerlein, and N.A. Mara, Adhesion of voids to bimetal interfaces with non-uniform energies, Scientific Reports 5 (2015) 15428.
24.C. Sun, S. Zheng, C.C. Wei, Y. Wu, L. Shao, Y. Yang, K.T. Hartwig, S.A. Maloy, S.J. Zinkle, T.R. Allen, H. Wang, and X. Zhang, Superior radiation-resistant nanoengineered austenitic 304L stainless steel for applications in extreme radiation environments, Scientific Reports 5 (2015).
25.Y.Z. Liu, X.B. Hu, S.J. Zheng*, Y.L. Zhu, H. Wei, and X.L. Ma*, Microstructural evolution of the interface between NiCrAlY coating and superalloy during isothermal oxidation, Materials & Design 80 (2015) 63-69.
26.J.S. Carpenter, T.J. Nizolek, R.J. McCabe, S.J. Zheng, J.E. Scott, S.C. Vogel, N.A. Mara, T.M. Pollock, and I.J. Beyerlein, The Suppression of Instabilities via Biphase Interfaces During Bulk Fabrication of Nanograined Zr, Materials Research Letters 3 (2015) 50-57.
27.J.S. Carpenter, T. Nizolek, R.J. McCabe, M. Knezevic, S.J. Zheng, B.P. Eftink, J.E. Scott, S.C. Vogel, T.M. Pollock, N.A. Mara, and I.J. Beyerlein, Bulk texture evolution of nanolamellar Zr–Nb composites processed via accumulative roll bonding, Acta Materialia 92 (2015) 97-108.
28.Y.T. Zhou, B. Zhang, S.J. Zheng, J. Wang, X.Y. San, and X.L. Ma, Atomic-scale decoration for improving the pitting corrosion resistance of austenitic stainless steels, Sci. Rep. 4 (2014) 3604.
29.S.J. Zheng*, J. Wang, J.S. Carpenter, W.M. Mook, P.O. Dickerson, N.A. Mara, and I.J. Beyerlein, Plastic instability mechanisms in bimetallic nanolayered composites, Acta Materialia 79 (2014) 282-291.
30.S.J. Zheng*, J.S. Carpenter, R.J. McCabe, I.J. Beyehein, and N.A. Mara, Engineering Interface Structures and Thermal Stabilities via SPD Processing in Bulk Nanostructured Metals, Scientific Reports 4 (2014) 4226.
31.S. Zheng*, J.S. Carpenter, J. Wang, N.A. Mara, and I.J. Beyerlein, An interface facet driven Rayleigh instability in high-aspect-ratio bimetallic nanolayered composites, Applied Physics Letters 105 (2014) 111901.
32.M. Jahedi, M.H. Paydar, S. Zheng, I.J. Beyerlein, and M. Knezevic, Texture evolution and enhanced grain refinement under high-pressure-double-torsion, Materials Science and Engineering: A 611 (2014) 29-36.
33.X.B. Hu, Y.B. Xue, S.J. Zheng, Y.L. Zhu, D. Chen, and X.L. Ma, Microstructural characteristics of the microphase Y-Ti2SC in nickel-based superalloys, Journal of Alloys and Compounds 611 (2014) 104-110.
34.W.Z. Han, E.K. Cerreta, N.A. Mara, I.J. Beyerlein, J.S. Carpenter, S.J. Zheng, C.P. Trujillo, P.O. Dickerson, and A. Misra, Deformation and failure of shocked bulk Cu–Nb nanolaminates, Acta Materialia 63 (2014) 150-161.
35.E.G. Fu, Y. Fang, M.J. Zhuo, S.J. Zheng, Z.X. Bi, Y.Q. Wang, M. Tang, X. Ding, W.Z. Han, H.M. Luo, J.K. Baldwin, A. Misra, and M. Nastasi, Interface structure of Nb films on single crystal MgO(100) and MgO(1111) substrates, Acta Materialia 64 (2014) 100-112.
36.C.A.J. Fisher, S. Zheng, A. Kuwabara, H. Moriwake, Y.H. Ikuhara, H. Oki, and Y. Ikuhara, Atomic-Level Characterization of Interfaces in LiCoO2, ECS Transactions 58 (2014) 1-11.
37.E.K. Cerreta, H. Weizhong, N.A. Mara, I.J. Beyerlein, J.S. Carpenter, S.J. Zheng, C.P. Trujillo, P.O. Dickerson, and A. Misra, The influence of rolling schedule on the dynamic properties of accumulatively roll bonded nano-layered Cu-Nb, Key Engineering Materials 622-623 (2014) 1031-40.
38.J.S. Carpenter, R.J. McCabe, S.J. Zheng, T.A. Wynn, N.A. Mara, and I.J. Beyerlein, Processing Parameter Influence on Texture and Microstructural Evolution in Cu-Nb Multilayer Composites Fabricated via Accumulative Roll Bonding, Metallurgical and Materials Transactions a-Physical Metallurgy and Materials Science 45A (2014) 2192-2208.
39.Z.X. Bi, B.P. Uberuaga, L.J. Vernon, J.A. Aguiar, E.G. Fu, S.J. Zheng, S.X. Zhang, Y.Q. Wang, A. Misra, and Q.X. Jia, Role of the interface on radiation damage in the SrTiO3/LaAlO3 heterostructure under Ne2+ ion irradiation, Journal of Applied Physics 115 (2014) 124315.
40.I.J. Beyerlein, J.R. Mayeur, S. Zheng, N.A. Mara, J. Wang, and A. Misra, Emergence of stable interfaces under extreme plastic deformation, Proceedings of the National Academy of Sciences of the United States of America 111 (2014) 4386-4390.
41.I.J. Beyerlein, J.R. Mayeur, R.J. McCabe, S.J. Zheng, J.S. Carpenter, and N.A. Mara, Influence of slip and twinning on the crystallographic stability of bimetal interfaces in nanocomposites under deformation, Acta Materialia 72 (2014) 137-147.
42.M. Ardeljan, M. Knezevic, T. Nizolek, I.J. Beyerlein, S.J. Zheng, J.S. Carpenter, R.J. McCabe, N.A. Mara, and T.M. Pollock, A multi-scale model for texture development in Zr/Nb nanolayered composites processed by accumulative roll bonding, in 6th International Conference on Nanomaterials by Severe Plastic Deformation, B. Beausir, et al., Editors. 2014, Iop Publishing Ltd: Bristol.
43.S.J. Zheng*, X.L. Ma, T. Yamamoto, and Y. Ikuhara, Atomistic study of abnormal grain growth structure in BaTiO3 by transmission electron microscopy and scanning transmission electron microscopy, Acta Materialia 61 (2013) 2298-2307.
44.S.J. Zheng, C.A.J. Fisher, T. Hitosugi, A. Kumatani, S. Shiraki, Y.H. Ikuhara, A. Kuwabara, H. Moriwake, H. Oki, and Y. Ikuhara, Antiphase inversion domains in lithium cobaltite thin films deposited on single-crystal sapphire substrates, Acta Materialia 61 (2013) 7671-7678.
45.S.J. Zheng, I.J. Beyerlein, J.S. Carpenter, K.W. Kang, J. Wang, W.Z. Han, and N.A. Mara, High-strength and thermally stable bulk nanolayered composites due to twin-induced interfaces, Nature Communications 4 (2013) 1696.
46.M.A. Monclús, S.J. Zheng, J.R. Mayeur, I.J. Beyerlein, N.A. Mara, T. Polcar, J. LLorca, and J.M. Molina-Aldareguía, Optimum high temperature strength of two-dimensional nanocomposites, APL Materials 1 (2013) 052103.
47.R. Liu, S.J. Zheng, J.K. Baldwin, M. Kuthuru, N. Mara, and A. Antoniou, Synthesis and mechanical behavior of nanoporous nanotwinned copper, Applied Physics Letters 103 (2013) 241907.
48.Q. Li, P. Xu, B. Zhang, H. Tsai, S.J. Zheng, G. Wu, and H.L. Wang, Structure-Dependent Electrocatalytic Properties of Cu2O Nanocrystals for Oxygen Reduction Reaction, Journal of Physical Chemistry C 117 (2013) 13872-13878.
49.J.S. Carpenter, S.J. Zheng, R.F. Zhang, S.C. Vogel, I.J. Beyerlein, and N.A. Mara, Thermal stability of Cu-Nb nanolamellar composites fabricated via accumulative roll bonding, Philosophical Magazine 93 (2013) 718-735.
50.I.J. Beyerlein, J. Wang, K. Kang, S.J. Zheng, and N.A. Mara, Twinnability of bimetal interfaces in nanostructured composites, Materials Research Letters 1 (2013) 89-95.
51.I.J. Beyerlein, N.A. Mara, J.S. Carpenter, T. Nizolek, W.M. Mook, T.A. Wynn, R.J. McCabe, J.R. Mayeur, K. Kang, S.J. Zheng, J. Wang, and T.M. Pollock, Interface-driven microstructure development and ultra high strength of bulk nanostructured Cu-Nb multilayers fabricated by severe plastic deformation, Journal of Materials Research 28 (2013) 1799-1812.
52.S.J. Zheng, I.J. Beyerlein, J. Wang, J.S. Carpenter, W.Z. Han, and N.A. Mara, Deformation twinning mechanisms from bimetal interfaces as revealed by in situ straining in the TEM, Acta Materialia 60 (2012) 5858-5866.
53.S. Zheng, C.A.J. Fisher, T. Kato, Y. Nagao, H. Ohta, and Y. Ikuhara, Domain formation in anatase TiO2 thin films on LaAlO3 substrates, Applied Physics Letters 101 (2012) 052103.
54.J. Wang, K. Kang, R.F. Zhang, S.J. Zheng, I.J. Beyerlein, and N.A. Mara, Structure and Property of Interfaces in ARB Cu/Nb Laminated Composites, Jom 64 (2012) 1208-1217.
55.H. Ohta, T. Mizuno, S. Zheng, T. Kato, Y. Ikuhara, K. Abe, H. Kumomi, K. Nomura, and H. Hosono, Unusually Large Enhancement of Thermopower in an Electric Field Induced Two-Dimensional Electron Gas, Advanced Materials 24 (2012) 740-744.
56.Y. Makimura, S.J. Zheng, Y. Ikuhara, and Y. Ukyo, Microstructural Observation of LiNi0.8Co0.15Al0.05O2 after Charge and Discharge by Scanning Transmission Electron Microscopy, Journal of the Electrochemical Society 159 (2012) A1070-A1073.
57.K. Kang, J. Wang, S.J. Zheng, and I.J. Beyehein, Minimum energy structures of faceted, incoherent interfaces, Journal of Applied Physics 112 (2012) 073501.
58.B. Cao#, T. Shi#, S. Zheng#, Y.H. Ikuhara, W. Zhou, D. Wood, M. Al-Jassim, and Y. Yan, New Polytypoid SnO2(ZnO:Sn)(m) Nanowire: Characterization and Calculation of Its Electronic Structure, Journal of Physical Chemistry C 116 (2012) 5009-5013.
59.I.J. Beyerlein, N.A. Mara, J. Wang, J.S. Carpenter, S.J. Zheng, W.Z. Han, R.F. Zhang, K. Kang, T. Nizolek, and T.M. Pollock, Structure-Property-Functionality of Bimetal Interfaces, Jom 64 (2012) 1192-1207.
60.S. Zheng, R. Huang, Y. Makimura, Y. Ukyo, C.A.J. Fisher, T. Hirayama, and Y. Ikuhara, Microstructural Changes in LiNi(0.8)Co(0.15)Al(0.05)O(2) Positive Electrode Material during the First Cycle, Journal of the Electrochemical Society 158 (2011) A357-A362.
61.Y.L. Zhu, S.J. Zheng, X.L. Ma, L. Feigl, M. Alexe, D. Hesse, and I. Vrejoiu, Microstructural evolution of PbZr(x)Ti(1-x)O(3)/PbZr(y)Ti(1-y)O(3) (n) epitaxial multilayers (x/y=0.2/0.4, 0.4/0.6) - dependence on layer thickness, Philosophical Magazine 90 (2010) 1359-1372.
62.Y.L. Zhu, S.J. Zheng, D. Chen, and X.L. Ma, Microstructure tuning of epitaxial BaTiO(3) (-) (x) thin films grown using laser molecular-beam epitaxy by varying the oxygen pressure, Thin Solid Films 518 (2010) 3669-3673.
63.S.J. Zheng, Y.J. Wang, B. Zhang, Y.L. Zhu, C. Liu, P. Hu, and X.L. Ma, Identification of MnCr(2)O(4) nano-octahedron in catalysing pitting corrosion of austenitic stainless steels, Acta Materialia 58 (2010) 5070-5085.
64.L. Feigl, S.J. Zheng, B.I. Birajdar, B.J. Rodriguez, Y.L. Zhu, M. Alexe, and D. Hesse, Impact of high interface density on ferroelectric and structural properties of PbZr(0.2)Ti(0.8)O(3)/PbZr(0.4)Ti(0.6)O(3) epitaxial multilayers, Journal of Physics D-Applied Physics 42 (2009) 085305.
65.Z.W. Zhu, S.J. Zheng, H.F. Zhang, B.Z. Ding, Z.Q. Hu, P.K. Liaw, Y.D. Wang, and Y. Ren, Plasticity of bulk metallic glasses improved by controlling the solidification condition, Journal of Materials Research 23 (2008) 941-948.
66.S.J. Zheng, K. Du, and X.L. Ma, Abnormal grain growth of BaTiO3 by 2D nucleation and lateral growth, Journal of the European Ceramic Society 28 (2008) 1821-1825.
67.G. Liu, M. He, K. Jin, G. Yang, H. Lue, K. Zhao, S. Zheng, and X. Ma, Fabrication of atomically smooth SrRuO(3) thin films by laser molecular beam epitaxy, Science in China Series G-Physics Mechanics & Astronomy 51 (2008) 745-749.
68.W.B. Cui, S.J. Zheng, W. Liu, X.L. Ma, F. Yang, Q. Yao, X.G. Zhao, and Z.D. Zhang, Anisotropic behavior of exchange coupling in textured Nd(2)Fe(14)B/alpha-Fe multilayer films, Journal of Applied Physics 104 (2008) 053903.
69.S.J. Zheng and X.L. Ma, Asymmetrical twin boundaries and highly dense antiphase domains in BaNb0.3Ti0.7O3 thin films, Philosophical Magazine 87 (2007) 4421-4431.
70.S.J. Zheng, K. Du, X.H. Sang, and X.L. Ma, TEM and STEM investigation of grain boundaries and second phases in barium titanate, Philosophical Magazine 87 (2007) 5447-5459.
71.M. Liu, X. Li, J. Lou, S. Zheng, K. Du, and N.X. Sun, A modified sol-gel process for multiferroic nanocomposite films, Journal of Applied Physics 102 (2007) 083911.
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河北工业大学材料科学与工程学院导师教师师资介绍简介-黄阳
黄阳博士、教授、博士生导师河北工业大学材料科学与工程学院地址:天津市红桥区光荣道29号河北工业大学南院300130电话:+86-邮箱:huangyang@hebut.edu.cn荣誉称号河北省“****”特聘专家、河北省享受政府特殊津贴专家、河北省****基金获得者学术兼职美国化学学会石油研究基金( ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-陈洪建
陈洪建,男,1966年生,材料物理与化学专业博士,教授,河北工业大学材料科学与工程学院党委书记。主要从事材料物理与化学教学及科研工作,研究方向为半导体材料、光电功能晶体材料的制备、结构及性能,涉及材料包括单晶硅、氮化镓、铌酸锂、蓝宝石等。重点研究晶体生长及晶体缺陷工程,近年来,先后承担国家及省部级项 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-张军
个人情况:张军,男,1982年出生,安徽全椒人,理学博士,教授通讯地址:天津市红桥区光荣道29号河北工业大学南院动力楼3楼E-mail:zhang.jun@hebut.edu.cn教育情况:2003.09-2010.06:华中师范大学,凝聚态物理专业,博士2008.09-2009.09:美国圣母大学 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-李国禄
李国禄,男,1966年生,中共党员,博士,教授,河北工业大学材料学院成形系主任。通讯地址:河北工业大学材料科学与工程学院天津市红桥区丁字沽一号路8号300130E-mail地址:liguolu@hebut.edu.cnliguolu0305@163.com办公电话:办公地点:河北工业大学南院材料学院 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-刘彩池
1.基本情况刘彩池,女,1964年3月生,工学博士,教授,博士生导师。教育部新世纪优秀人才,河北省新世纪三三三三层次人才,河北省高校中青年骨干教师,河北省优秀博士后,天津市三八红旗手,河北工业大学信息功能材料研究所所长,从事半导体材料的教学与科研工作及材料物理与化学博士生 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-林靖
林靖博士、教授、博士生导师河北工业大学材料科学与工程学院地址:天津市红桥区光荣道29号河北工业大学南院300130电话:+86-邮箱:linjing@hebut.edu.cn主要从事低维纳米材料的合成及光电性能研究。截至2018年4月在ACSNano,J.Mater.Chem系列,Chem.Mate ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-赵建玲
基本概况:赵建玲,女,1969年8月生,博士,教授,博士研究生导师。现任校学术委员会委员,信息功能材料研究所副所长,无机非金属系副主任,九三学社河北工业大学支社委员。河北省****基金获得者,河北省三三三人才工程第二层次人选,河北省高校百名优秀创新人才。1991年7月毕业 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-杨勇
杨勇,男,1980年生,工学博士,教授,博士生导师。河北工业大学,材料科学与工程学院,金属材料工程系。基本情况:杨勇,2009年博士毕业于哈尔滨工业大学材料学学科。主持国家自然科学基金等省部级以上项目13项;作为主研参与国家自然科学基金等省部级以上项目12项。研究成果获得省级自然科学二等奖1项,获得 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-李海鹏
1.基本情况李海鹏、男、教授、汉族、39岁、硕士生导师。教育经历:1995.09-1999.07河北工业大学材料学院工学学士1999.09-2002.03河北工业大学材料学院材料加工工程工学硕士2005.092008.09天津大学材料学院材料学工学博士任职经历:2002.04-2004 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15河北工业大学材料科学与工程学院导师教师师资介绍简介-王西新
1.基本情况王西新,男,汉族,教授,硕士生导师。毕业于武汉大学,长期从事科学研究和高校教学工作。2.研究领域半导体材料、光电功能材料、复合材料等的制备、结构、机理、性能及应用研究。3.科研成果先后承担国家及省部级项目十余项,发表SCI收录论文30余篇,获得国家授权发明专利十余项。4.近年所发表主要论 ...河北工业大学师资导师 本站小编 Free考研考试 2020-10-15