先进设计与智能制造教研室

祁复功

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祁复功,甘肃兰州人,研究生/博士,讲师,硕士生导师。近年来主持中央高校基本科研业务费面上项目及横向项目4项,参与国家自然科学基金项目3项和中央军委装备发展部装备预研项目1发表SCI收录论文20篇。

研究方向:输变电金具设计制备、异质结构仿真模拟、陶瓷/金属界面连接

招生专业:学术型硕士(080200机械工程)

专业型硕士(085501机械工程、085601材料工程)

教育和工作经历:2022.07 - 至今 华北电力大学 机械工程系 讲师

2018.09 - 2022.06   天津大学 材料学院 博士

2015.09 - 2018.04 华北电力大学 机械工程系 硕士

2011.09 - 2015.07 华北电力大学 机械工程系 学士

代表性论著:

1. F.G. Qi, Z.W. Yang, J.F. Zhang, et al. Interfacial reaction-induced defect engineering: Enhanced visible and near-infrared absorption of wide band gap metal oxides with abundant oxygen vacancies. ACS Applied Materials & Interfaces, 2020, 12, 55417-55425. (SCI期刊论文)

2. F.G. Qi, J.F. Zhang, L.Z. Song, et al. Engineering dual active sites at the interface between nanoporous Pt and nano-sized CeO2 to enhance photothermocatalytic CO oxidation. Advanced Materials Interfaces, 2021, 8, 2100581. (SCI期刊论文)

3. F.G. Qi, Z.W. Yang, Y. Wang, et al. Defects in black zirconia responsible for solar energy harvesting. Journal of Materials Chemistry C, 2021, 9, 16732-16740. (SCI期刊论文)

4. F.G. Qi, Z.W. Yang, Q.W. Qiu, et al. Defective TiO2 with increased photocatalytic activity synthesized by the TiO2/Ti interfacial reaction method. Surfaces and Interfaces, 2022, 30, 101828. (SCI期刊论文)

5. F.G. Qi, N. Wang, Z.W. Yang, et al. Blackening mechanism and mechanical properties variation of zirconia ceramic induced by active metal brazing. Advanced Engineering Materials, 2022, 24, 2200105. (SCI期刊论文)

6. F.G. Qi*, Z.W. Yang, Y. Wang, et al. Different interfacial reaction modes between ZrO2 and active metals: Insights from interfacial reaction experiments and molecular dynamic simulation. Ceramics International, 2024, 50, 14326-14339. (SCI期刊论文)

7. F.G. Qi*, Q. Liu, J. Zhou, et al. Study on the oxygen diffusion capacity of black zirconia by molecular dynamic method. Journal of Phase Equilibria and Diffusion, 2024, 45, 779-789. (SCI期刊论文)

8. H.M. Ding, W.C. Jin, F.G. Qi*, et al. Atomic insight on the electronic structure and interfacial bonding characterization of the Cu/TiC interface. Ceramics International, 2024, 50, 46791-46801. (SCI期刊论文)

电子邮箱:qifugong@163.com

通信地址:河北省保定市华电路689华电二校区教八楼





添加时间:2024-03-11

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