1. 中文

Jiang Man

Time:December 22, 2021 Editor:Tang Shiqing Source:



Associate professor


Email: jiangm@hust.edu.cn

Academic Areas: Nuclear material

Research Interests: Interaction between nuclear materials and radionuclides (tritium, polonium); Material irradiation; Positron annihilation spectroscopy and its application

 

Academic Degrees

PhD, 2014, Particle Physics and Nuclear Physics, School of Physics and Technology, Wuhan University, China

Bachelor, 2009, Applied Physics, School of Physics, Shandong University, China.

 

Professional Experience

Associate Professor (2019-present); School of Energy and Power Engineering, Huazhong University of Science and Technology

Associate Professor (2018-2019); Hefei Institutes of Physical Science, Chinese Academy of Science

Assistant Professor (2014-2018); Hefei Institutes of Physical Science, Chinese Academy of Science

 

Selected Publications

1.      M. Jiang*, Z. C. Zhao, H. Du, Z. Q. Chen, M. Y. Ni*, Role of surface defects in trap of monoatomic polonium on Pd surface, Journal of Nuclear Materials, 2021, 557, 153205

2.      M. Jiang*, J. J. Mao, X. F. Li*, Z. Q. Chen, First principles calculation of hydrogen adsorption, dissociation and diffusion on Cr/Ni/Mn doped a Al2O3 (0001) surface, International Journal of Hydrogen Energy, 2021, 46, 6693-6700

3.      B. J. Nie, S. Fang, M. Jiang, L. S. Wang, M. Y. Ni, J. Y. Zheng, Z. Y. Yang*, F. C. Li*, Anthropogenic tritium: Inventory, discharge, environmental behavior and health effects, Renewable and Sustainable Energy Reviews, Renewable and Sustainable Energy Reviews, 2021, 135, 11018

4.      M. Jiang*, B. J. Nie, Z. C. Yang, M. Y. Ni, Z. Q. Chen, First principles investigation of hydrogen adsorption and dissociation on Fe doped α-Al2O3 (0001) surface, Journal of Nuclear Materials, 2020, 533, 152102

5.      Projects

1.      National Natural Science Foundation of China:12175079, Positron annihilation study of the microstructure defects and their effect on thermoelectric properties in cold sintered thermoelectric materials, 2022/01—2025/12

2.      National Natural Science Foundation of China-Russian foundation for basic research: 1181153070, Microstructure Damage Effect on Deuterium Retention in Reduced Activation Ferritic Martensitic Steels, 2018/01-2019/12

3.      National Natural Science Foundation of China:11605232, Mechanism of tritium and decayed helium-3 effect on microstructure damage in low activation Ferritic/martensitic steel, 2016/01—2019/12

4.      National Magnetic Confinement Fusion Science Program of China, sub-project, Calculation of tritium related behavior of low activation Ferritic/martensitic steel, 2016/01-2018/12

5.      Natural Science Foundation of Anhui province of China:1708085QE,101 Effect of helium on grain boundary embrittlement of low activation Ferritic/martensitic steel, 2017/01—2019/06

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