王树申

发布时间:2023-10-26 发布者: 浏览次数:

姓名

王树申

职称

副教授

性别

联系电话

17702709551

电子邮件

wss1127@wust.edu.cn

通信地址

武汉科技大学理学院

学术兼职


一级学科

材料科学与工程

二级学科

材料学

研究方向

多孔金属材料的制备及其催化/电催化性能;污水处理;氢能源

个人简历

受教育经历:

2010-09至2015-01,北京科技大学,新金属材料国家重点实验室,博士

2008-09至2010-07,北京科技大学,新金属材料国家重点实验室,硕士

2004-09至2008-07,吉林大学,材料科学与工程学院材料科学系,学士

研究工作经历:

2020-01至,武汉科技大学,理学院应用物理系,副教授

2017-09至2019-12,武汉科技大学,理学院应用物理系,讲师

2015-02至2017-09,华中科技大学,材料科学与技术系,博士后

主要著作


主要科研项目

主持科研项目:

1. 国家自然科学基金委员会青年项目,51601065,基于非晶合金的多级纳米多孔金属结构调控及电催化性能研究,2017-01至2018-12,20万元,主持

2. 中国博士后科学基金委员会面上项目,2016M592329,基于非晶合金的纳米多孔结构多尺度调控及催化性能研究,2015-07至2017-07,5万元,主持

3. 国家重点实验室开放基金项目,2019-Z04,非晶合金脱合金化制备纳米多孔Cu/Cu2O及其降解性能研究,2019-07至2021-06,5万元,主持

4. 湖北省重点实验室面上项目,Y201903, 微纳多级纳米多孔金属结构调控与性能研究2020/01-2021/12,2万,主持


参与项目:若干


主要论文

[1] F.D. Li, X. Chang, S.S. Wang, Y.Z. Guo, H.Y. Li, K.M. Wu, Excellent electrocatalytic performance toward methanol oxidation of hierarchical porous NiCu obtained by electrochemical dealloying, Journal of Alloys and Compounds, 2023 (934) 167811.

[2] X. Chang, Z.W. Duan, D.S. Wang, S.S. Wang, Z. Lin, B. Ma, K.M. Wu, High-Entropy Spinel Ferrites with Broadband Wave Absorption Synthesized by Simple Solid-Phase Reaction, Molecules, 2023 (28) 3468.

[3] L.Y. Gu, S.S. Wang, X.D. Hui, F.D. Li, H.F. Lin, K.M. Wu. Degradation performance and mechanism toward methyl orange via nanoporous copper powders fabricated by dealloying of ZrCuNiAl metallic glassy precursors, Nanotechnology, 2022 33(13) 135713.

[4] F.D Li, S.S. Wang, L.Y. Gu, X. Chang, K.M. Wu. One-step dealloying of ni-y-al metallic glass for fabrication of nanoporous hybrid toward efficient water splitting reaction. Ionics, 2022 28(3) 1367-1376.

[5] D.S. Wang, A. Mukhtar, M. Humayun, K. M. Wu, ZL. Du, S.S. Wang, Y.X. Zhang, A Critical Review on Nanowire-Motors: Design, Mechanism and Applications, The Chemical Record, 2022 22(8) 202200016.

[6] S.S. Wang, H.Y. Li, H.F. Lin, K.M. Wu, Enhanced electro-catalytic performance of Pd-based hierarchical nanoporous structures fabricated by micropatterning and dealloying of Pd-Ni-P metallic glass. Nanotecnology, 2020 (31) 155310.

[7] S.S. Wang, N. Li, L. Liu. Enhanced hydrogen generation performance of Pd-based micro/nano hierarchical porous structure. Materials Letters, 2018 (228) 443-446.

[8] H.Y. Li, S.S. Wang, L Liu, Z.W. Zhang, Y. Yu, L. Liu, Y. Wu. Flexible Bimetallic Nanoporous Cu-Ag Synthesized by Electrochemical Dealloying for Battery-Type Electrodes with High Electrochemical Performance. Journal of the Electrochemical Society, 2018 165(5) A947-A951.

[9] S.S. Wang, L. Liu. Fabrication of novel nanoporous copper powder catalyst by dealloying of ZrCuNiAl amorphous powders for the application of wastewater treatment. Journal of Hazardous Materials, 2017 (340) 445-453.

[10] S.S. Wang, C. Zhang, H.Y. Li, L. Liu. Enhanced electro-catalytic performance of Pd-based amorphous nanoporous structure synthesized by dealloying Pd32Ni48P20 metallic glass. Intermetallics, 2017 (87) 6-12.

[11] S.S. Wang, L. Chang, T. Wang, Y.D. Wu, J.J. Si, J. Zhu, M.X. Zhang, X.D. Hui. Microstructural Stability and Short-term Creep Properties of 12Cr-W-Mo-Co Steel. Materials Science and Engineering A, 2015 (622) 204-211.

[12] S.S. Wang, Y.L. Wang, Y.D. Wu, T. Wang, X.D. Hui. High plastic Zr-Cu-Fe-Al-Nb bulk metallic glasses for biomedical applications. International Journal of Minerals Metallurgy and Materials, 2015 (6) 648-653.

[13] S.S. Wang, L. Chang, D.Y. Lin, X.H. Chen, X.D. Hui. High Temperature Strengthening in 12Cr-W-Mo Steels by Controlling the Formation of Delta Ferrite. Metallurgical and Materials Transactions A, 2014, 45A(10) 4371-4385.

[14] S.S. Wang, L. Chang, Y.D. Wu, T. Wang, X.H. Chen, X.D. Hu. Structural Mechanism of the Scale for 12Cr-W-Mo-Co Steels with Enhanced Oxidation Resistance. Corrosion Engineering Science and Technology, 2014 49(8) 727-735.

[15] S.S. Wang, D.L. Peng, L. Chang, X.D. Hui. Enhanced mechanical properties induced by refined heat treatment for 9Cr-0.5Mo-1.8W martensitic heat resistant steel. Materials & Design, 2013 (50) 174-80.


主要获奖情况



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